Manjira Chowdhury | Chemical engineering | Best Researcher Award

Mrs. Manjira Chowdhury | Chemical engineering | Best Researcher Award

Mrs. Manjira Chowdhury, University of Dhaka, Best Researcher Award

Mrs. Manjira Chowdhury is an accomplished chemistry educator and researcher with a strong academic background in Applied Chemistry and Chemical Engineering from Dhaka University, where she earned First Class in both BSc and MSc programs. She currently teaches O Level Chemistry and Science at Academia Banasree Campus, where she received the “Most Dedicated Award” in 2023. Her notable research on “Surface modification of Polycarbonate films with HEMA and NVP monomers by radiation techniques” was published in the Journal in Engineering (Elsevier, UK) in March 2024, based on work conducted at the Bangladesh Atomic Energy Commission. She has presented her research at the MACRO 2002 conference at IIT Kharagpur and had her abstract accepted at the 21st Bangladesh Science Conference. Additionally, she holds a Pearson certification in GCSE Chemistry training from the British Council. Mrs. Chowdhury integrates hands-on lab experience into her teaching and exemplifies a blend of scientific inquiry and academic dedication.

Publication Profile

Scopus

Research and Academic Contributions

Mrs. Manjira Chowdhury is a dedicated academic and researcher in the field of Applied Chemistry, with a passion for scientific inquiry and education. She received the “Most Dedicated Award” from Academia Banasree Campus in 2023, where she currently teaches Chemistry and Science. Her significant research work, titled “Surface modification of Polycarbonate films with HEMA and NVP monomers by radiation techniques,” was published in the Journal in Engineering (Elsevier, Volume 22, UK) on March 24, 2024. This research was conducted at the Bangladesh Atomic Energy Commission between 1998 and 2000. She also presented her work at MACRO 2002, the 7th National Conference of the Society of Polymer Science and Engineering at IIT Kharagpur, India, and her abstract was accepted at the 21st Bangladesh Science Conference in 2001. Further enhancing her professional development, she earned a Pearson certificate for training in GCSE Chemistry delivery from the British Council in October 2023.

Professional Experience

Mrs. Manjira Chowdhury has been serving as an O Level Chemistry Teacher for the senior section and a Science teacher for the middle section at Academia Banasree Campus. In her current role, she is responsible for conducting Chemistry classes for students of standards VII, VIII, IX, and X, where she simplifies complex chemical concepts to make them engaging and comprehensible. She also teaches general Science to middle school students, fostering a foundational understanding of scientific principles at an early age. A key part of her teaching methodology includes hands-on laboratory instruction, where she actively conducts experiments and oversees lab sessions to enhance students’ practical knowledge and scientific inquiry skills. Her dynamic teaching approach, which blends theoretical lessons with real-world applications, plays a vital role in nurturing a scientific mindset among her students. Mrs. Chowdhury’s contributions significantly enrich the academic environment of the institution.

Research Focus

Mrs. Manjira Chowdhury’s research focus lies at the intersection of applied chemistry, polymer science, radiation chemistry, and more recently, environmental health and ecotoxicology. Her earlier work, such as the surface modification of polycarbonate films using HEMA and NVP monomers through radiation techniques, showcases her expertise in polymer modification and materials engineering. This research was carried out in collaboration with the Bangladesh Atomic Energy Commission, indicating her proficiency in advanced chemical processing techniques involving radiation. Expanding her research horizon, she is also contributing to the field of environmental chemistry, as seen in her 2025 open-access article on assessing potentially toxic elements in edible fish from Bangladesh’s coastal islands—emphasizing public health risk analysis, environmental toxicology, and food safety. Her multidisciplinary approach highlights a transition from industrial and polymer-based research to pressing ecological and health-related chemical studies, demonstrating her adaptability and continued relevance in contemporary scientific inquiry with real-world societal impact.

Publication Top Notes

📘 “Surface modification of polycarbonate films with 2-hydroxyethylmethacrylate (HEMA) and N-vinyl pyrrolidone (NVP) monomers by radiation techniques” – Published in Journal in Engineering (Elsevier, UK), Volume 22, March 2024 | 📅 Year: 2024

📗 “Assessing potentially toxic elements in edible fish: A health risk analysis from Coastal Islands in Bangladesh” – Published in Environmental Chemistry and Ecotoxicology (Open Access), 2025 | 📅 Year: 2025

Mohamed Dokmak | Engineering | Best Academic Researcher Award

Mr. Mohamed Dokmak | Engineering | Best Academic Researcher Award

Mr. Mohamed Dokmak, Housing and building national research center of EGYPT, Egypt

Mohamed Mahmoud Ali Ali Dokmak is an Egyptian structural engineer with over 9 years of experience at the Housing & Building National Research Center (HBRC). He holds a B.Sc. (Honors), M.Sc. in Steel Structures, and a Pre-PhD in Structural Engineering from Shoubra Faculty of Engineering, Benha University. 🏗️ A technical committee member for the Egyptian Steel Code and HBRC Development Committee, his research focuses on CFRP-strengthened steel structures and composite systems. 📚 He has published in top journals such as Construction and Building Materials and Structures. 🇪🇬 Mohamed is known for blending field expertise with advanced design research

Publication Profile

Scopus

🎓 Educational Background

Mr. Mohamed Dokmak holds a distinguished academic record in structural engineering. He earned his B.Sc. degree in Structural Engineering from Shoubra Faculty of Engineering, Benha University in July 2013, graduating third in his class with an Excellent with Honors grade, and an exceptional steel structure graduation project. 🏗️ He continued his studies at the same institution, completing an M.Sc. in Steel Structures in 2019. 📘 In 2020, he successfully completed the Pre-PhD year in Structural Engineering with an ‘A’ grade, demonstrating his strong academic foundation and commitment to research excellence.

🏗️ Research Experience

Mr. Mohamed Dokmak has been actively engaged in structural engineering research at the Housing & Building National Research Center (HBRC) since July 2015, serving as an Assistant Researcher and Technical Engineer in the Structures and Steel Constructions Institute. 🔬 He is a dedicated member of the Technical Secretariat for the development of the Egyptian Code for Steel Buildings since 2019. 📘 Additionally, he served on the HBRC Construction Development Committee from 2019 to 2024. 🏢 His work integrates practical engineering knowledge with national standards development, contributing significantly to Egypt’s construction research sector.

🔬 Research Focus

Mr. Mohamed Dokmak’s research primarily centers on structural engineering, with a focus on steel structures, composite systems, and structural strengthening using advanced materials like CFRP (Carbon Fiber Reinforced Polymer). 🏗️ His studies investigate the behavior and performance of hollow steel sections and the interaction between innovative concrete slabs and CF’S beams. His work integrates experimental analysis, design optimization, and material innovation, contributing to safer and more efficient construction technologies. 📐 His research advances sustainable, high-performance solutions in civil engineering, particularly for buildings and infrastructure systems.

Publication Top Notes

📘 “Behavior of hollow steel sections strengthened with CFRP”Construction and Building Materials, 2019 – Cited by 150+ 🧪
🔗 DOI:10.1016/j.conbuildmat.2019.01.237

📑 “Major Parameters Governing the Strength of Hollow Steel Sections Strengthened by CFRP”Egypt Steel 19 Conference, 2019 – Cited by 15+ 📊

🏗️ “Investigating the composite action between innovative concrete slabs and CF’S beams”Structures, 2025New Publication
🔗 DOI:10.1016/j.istruc.2025.109399

Fatih Sevim | Chemical Engineering | Best Researcher Award

Prof. Dr. Fatih Sevim | Chemical Engineering | Best Researcher Award

Prof. Dr. Fatih Sevim, Atatürk University, Turkey

Prof. Dr. Fatih Sevim is a distinguished professor of Chemical Engineering at Atatürk University, Turkey 🇹🇷. He earned his BSc, MSc, and PhD in Chemical Engineering from the same institution (1985–1996) 🎓. With over three decades of academic service, he has significantly contributed to areas like adsorption, nanocatalysts, and thermodynamics 🔬. He has published 35+ SCI-indexed articles, authored books, and supervised numerous theses 📚. His research projects are supported by top institutions, and his work has received 370+ citations with an H-index of 9 📈. Prof. Sevim actively teaches undergraduate and doctoral courses while advancing engineering research innovation

Publication Profile

Google Scholar

🎓 Academic Background

Prof. Dr. Fatih Sevim pursued his academic journey in Chemical Engineering at Atatürk University, Turkey. He began with his undergraduate studies at the Faculty of Engineering from 1985 to 1989 🧪. He continued with his postgraduate education at the Institute of Science in the Department of Chemical Engineering from 1989 to 1991 🧫. Advancing further, he completed his doctorate in the same department and institution from 1991 to 1996, deepening his expertise in chemical processes and engineering research 🧬. His educational background laid a strong foundation for his distinguished academic and professional career in engineering.

Academic and Administrative Experience

Prof. Dr. Fatih Sevim has built an esteemed academic career at Atatürk University’s Faculty of Engineering, Department of Chemical Engineering. He began as a Research Assistant (1993–1996) 🔬, then served as an Assistant Professor (1996–2010) 🧪, Associate Professor (2010–2015) 📖, and has been a full Professor since 2015 👨‍🏫. Alongside his teaching and research, he contributed administratively as a Member of the Faculty Academic Board (2016–2021) 🏢 and the Faculty Council (2016–2021) 🧑‍⚖️. His longstanding dedication reflects his deep commitment to academic excellence and institutional development.

🔬 Research Focus

Prof. Dr. Fatih Sevim’s research is primarily centered on chemical engineering, with key expertise in reaction kinetics, thermogravimetric analysis, and adsorption science. His work spans thermal decomposition 📉, calcination ⚗️, dissolution kinetics 💧, and recovery of metals such as copper and gold 🪙. He has made significant contributions to environmental chemistry, including the removal of dyes and heavy metals using natural adsorbents 🌱. Additionally, he has explored nanocomposite materials and ceramic nanofibers through sol-gel and electrospinning techniques 🧵. His interdisciplinary approach supports advancements in sustainable energy, environmental remediation, and industrial process optimization

Publication Top Notes

📘 Kinetic analysis of thermal decomposition of boric acid from thermogravimetric data — Cited by 231 | 🗓️ 2006
📘 Calcination kinetic of magnesite from thermogravimetric data — Cited by 82 | 🗓️ 2003
📘 A kinetic study of the cementation of copper from sulphate solutions onto a rotating aluminum disc — Cited by 77 | 🗓️ 1999
📘 Adsorption behavior of malachite green onto natural red clay — Cited by 69 | 🗓️ 2021
📘 Recovery of gold from decopperized anode slime — Cited by 66 | 🗓️ 2001
📘 Dissolution Kinetics of Phosphate Ore in H₂SO₄ Solutions — Cited by 50 | 🗓️ 2003
📘 Flash calcination of magnesite ore and leaching of magnesia — Cited by 35 | 🗓️ 1994
📘 Reduction kinetics of Cr₂O₇²⁻ in FeSO₄ solution — Cited by 16 | 🗓️ 2008
📘 Dissolution of magnesia in CO₂ by ultrasound — Cited by 16 | 🗓️ 2006
📘 Adsorption of BY28 using natural red clay — Cited by 12 | 🗓️ 2019
📘 NiO/Al₂O₃/B₂O₃/SiO₂ composite via sol-gel & electrospinning — Cited by 6 | 🗓️ 2014
📘 Precipitation of Chevreul’s Salt from CuSO₄ solutions — Cited by 5 | 🗓️ 2014
📘 Dehydration kinetics of tincalconite — Cited by 3 | 🗓️ 2014
📘 Removal of textile dye in wastewater — Cited by 2 | 🗓️ 2024

Limin Gu | Chemical Engineering | Best Researcher Award

Assist. Prof. Dr. Limin Gu | Chemical Engineering | Best Researcher Award

Assist. Prof. Dr. Limin Gu, Hebei University of Science and Technology, China

🔬 Assist. Prof. Dr. Limin Gu is an expert in 🔥 flame retardant materials and serves at Hebei University of Science & Technology. She holds a Doctor of Engineering in Materials Science from Beijing Institute of Technology. With over 20 publications, a scholarly monograph, and 10+ patents, her work focuses on bio-based, halogen-free flame retardants, waterborne polyurethanes, and material safety. She is an active member of the Chemical Safety & Verification Center and frequently uses GC-MS, TGA, TG-IR in her research. Her innovations contribute significantly to chemical safety, sustainability, and polymer engineering. 📚🧪🛡️

Publication Profile

Scopus

🎓 Educational Background

Assist. Prof. Dr. Limin Gu has a strong academic foundation in Materials Science and Engineering. She earned her Doctorate in Engineering in June 2016 from the prestigious Beijing Institute of Technology 🏛️. Prior to that, she completed both her Master’s degree in June 2006 and her Bachelor’s degree in June 2003 from Hebei University of Science & Technology 🎓. Her educational journey reflects a consistent commitment to scientific excellence, forming the basis for her impactful research in flame retardant materials 🔥 and chemical engineering innovations 🧪.

🔬 Research Focus

Assist. Prof. Dr. Limin Gu’s research primarily focuses on bio-based flame retardant materials, with an emphasis on polyurethanes derived from sustainable raw materials 🌱. Her work explores innovative preparation methods, halogen-free flame retardant technologies, and their thermal stability and applications in advanced polymer systems 🔥🧪. She integrates green chemistry principles to design materials that are both eco-friendly and high-performance ♻️. Additionally, her studies involve phosphorus–nitrogen synergistic systems, nanomaterials like graphene, and intumescent flame retardants. This positions her expertise within materials science, polymer engineering, and fire safety innovation 🏗️🧬.

Conclusion

Assist. Prof. Dr. Limin Gu presents a strong candidacy for the Best Researcher Award. Her profile is distinguished by academic rigor, innovative research on sustainable flame retardants, a significant patent portfolio, and impactful publications. Additionally, her contributions to chemical safety align with international frameworks, making her a noteworthy figure in materials science and chemical engineering.

Publication Top Notes

  • 📘 2025: Raw materials, preparation methods, flame retardant properties and applications of bio-based flame retardant polyurethanes: Research progress and challenges – European Polymer Journal. 🔥🧪

  • 📘 2015: Flame Retardancy and Thermal Decomposition of the Phosphorus-containing Waterborne Polyurethanes modified by Halogen-free Flame retardants – Industrial & Engineering Chemistry Research. 🧯🌿

  • 📘 2015: Halogen-Free Flame-Retardant Waterborne Polyurethane with a Novel cyclic structure of Phosphorus−Nitrogen Synergistic Flame Retardant – Journal of Applied Polymer Science. 🔄🧬

  • 📘 2016: Preparation and Performance Evaluation of Phosphorus-nitrogen Synergism Flame-retardant Water-borne Coatings for Cotton and Polyester fabrics – Journal of Polymer Research. 👕🧪

  • 📘 2020: Preparation and characterization of the halogen-free, smoke suppression, organic–inorganic hybrid flame-retardant expandable polystyrene materials – Journal of Applied Polymer Science. 🌫️♻️

  • 📘 2022: Synthesis and characterization of bio-based “three sources in one” intumescent flame retardant monomer and the intrinsic flame retardant waterborne polyurethane – Journal of Polymer Research. 🌿🔥

  • 📘 2023: Study on surface modification and properties of bio-based intumescent flame retardant – Journal of Thermal Analysis and Calorimetry. 🔬🌱

  • 📘 2020: Study on properties and application of pyrophosphate flame retardant microcapsules prepared from hemicellulose maleate – Cellulose. 🧫🌾

  • 📘 2019: Modification of hyperbranched hemicellulose polymer and its application in adsorbing acid dyes – Cellulose. 🎨🧪

Jyoti Sharma | Metallo Organic Chemistry | Best Researcher Award

Prof. Jyoti Sharma | Metallo Organic Chemistry | Best Researcher Award

Prof. Jyoti Sharma, University of Rajasthan, Jaipur, India

Prof. Jyoti Sharma is a distinguished Professor of Chemistry at the University of Rajasthan, Jaipur. With over two decades of experience in teaching and research, she specializes in Synthetic Inorganic and Organometallic Chemistry. She has published 42 research papers and guided 8 Ph.D. scholars. Prof. Sharma has led two UGC-funded projects and contributed significantly to academic development through her involvement in refresher courses, BOS, and university committees. A committed educator and researcher, she is an active member of several prestigious societies including CRSI, ISCB, and ISCA. Her academic journey reflects dedication, innovation, and excellence in the field of chemistry. 🧪📘

Publication Profile

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🎓 Education

Prof. Jyoti Sharma completed her M.Sc. and Ph.D. in Chemistry from the University of Rajasthan, Jaipur. Her academic training was further enriched through a two-year postdoctoral fellowship as a Research Associate at the same university from 1997 to 2000. With a strong foundation in chemical sciences, her advanced studies focused on inorganic and organometallic compounds, setting the stage for her specialized research work. Throughout her academic life, she has maintained a keen interest in interdisciplinary approaches involving coordination chemistry and ligand interaction studies, forming the core of her academic and scientific expertise. 🎓🧫

📚 Experience

Prof. Sharma boasts 24 years of research and teaching experience in Chemistry, with 2 additional years of postdoctoral work. She has taught undergraduate students for over two decades and postgraduate students for 2 years. She has guided 8 Ph.D. students and currently supervises 2 more. Apart from teaching, she has held several administrative roles, including serving as Proctor and Convener for PG Admissions. She is actively engaged in academic governance as a member and Convenor of the Board of Studies in Chemistry. Her experience reflects a deep engagement in both academic and administrative aspects of higher education. 👩‍🏫🧪

🏅 Awards and Honors

Though no formal awards are currently listed, Prof. Jyoti Sharma’s professional journey is marked by academic recognitions and leadership roles. She has been elected as a Board of Studies member (2021-22) and currently serves as its Convenor. She has also organized and attended several refresher and orientation courses and served as Deputy Coordinator. Her selection for these roles demonstrates institutional trust in her academic leadership. Additionally, she has served as a proctor and contributed to multiple university committees, reflecting her strong commitment to academic service and university administration. 🏆📖

🔬 Research Focus

Prof. Sharma’s research primarily focuses on Synthetic Inorganic and Organometallic Chemistry, emphasizing the synthesis, spectral characterization, and bioactivity of metal complexes involving antimony, arsenic, and bismuth. Her work involves mixed valency derivatives and studies of compounds with oxygen, nitrogen, and sulfur ligands. She has completed two UGC-funded research projects and has over 40 peer-reviewed publications. Her scientific contributions aim to explore the chemical behavior and potential applications of metallorganic compounds, especially in bioinorganic systems. Her work stands out for its structural and functional insights into coordination chemistry. 🧪🧬

Publication Top Notes

📘 Kangaroo mother care vs conventional care for LBW babies – SM Ali, J Sharma, R Sharma, S Alam | Cited by 95 | 🗓️ 2009 👶💖
🔬 Boron compounds of semicarbazones: antimicrobial & nanosized B₂O₃ – J Bhomia, J Sharma, RA Sharma, Y Singh | Cited by 16 | 🗓️ 2018 🧪🦠
⚗️ Triorganotin(IV) & Schiff bases: synthesis & antimicrobial study – P Bhatra, J Sharma, RA Sharma, Y Singh | Cited by 16 | 🗓️ 2017 🔬⚛️
🧬 Metal-induced benzothiazoline ring rearrangement with organoantimony(V) – D Shanker, RK Sharma, J Sharma, et al. | Cited by 12 | 🗓️ 2007 🔁⚗️
🧪 Antimony(III) heteroleptic derivatives: synthesis & antibacterial activity – S Beniwal, A Kumar, J Sharma, et al. | Cited by 9 | 🗓️ 2019 💊🔍
🧫 Triphenylarsenic(V)/antimony(V) & Schiff bases: antimicrobial – R Agrawal, J Sharma, et al. | Cited by 9 | 🗓️ 2011 ⚗️🧪
📐 Triphenylantimony(V) heteroleptics: XRD, antibacterial & antioxidant – S Beniwal, A Kumar, J Sharma, et al. | Cited by 7 | 🗓️ 2019 🧪📊
🧪 Monophenylantimony(III) & dithiocarbamates: synthesis & antimicrobial – DK Sharma, Y Singh, J Sharma | Cited by 7 | 🗓️ 2013 🧫🔬
👶 Serum ferritin as sepsis marker in pediatric patients – J Sharma, R Sharma | Cited by 6 | 🗓️ 2018 🩸📈
🧬 Organoboron semicarbazones: synthesis, antimicrobial & antifertility – RASYS Jyoti Bhomia, J Sharma, et al. | Cited by 6 | 🗓️ 2018 🧪👩‍🔬
🧪 Heteroleptic boron Schiff base derivatives: synthesis & antimicrobial – V Jangir, J Sharma, et al. | Cited by 6 | 🗓️ 2016 ⚗️🧫
🔬 Mixed Chloro Bis [Dithiophosphato] Antimony(III) & boron derivatives – R Agrawal, J Sharma, et al. | Cited by 6 | 🗓️ 2010 ⚛️🔍

Mourad Ouhammou | Chemistry Award | Best Researcher Award

Prof. Dr. Mourad Ouhammou | Chemistry Award | Best Researcher Award

Dr. Ouhammou Mourad is a chemist and environmental researcher with a PhD in Chemistry and Environment from Cadi Ayyad University. With over 8 years of experience, he specializes in HQSE systems, phytochemistry, analytical chemistry, and eco-friendly waste management. He is a member of the ECOVAL cooperative and has held various academic and industry roles, including QSE manager and university trainer. His expertise spans polyphenols, flavonoids, food chemistry, and chromatographic techniques. Dr. Mourad has authored numerous scientific publications and actively contributes to international conferences and sustainability workshops. 🌱🔬📊

Publication Profile

Scopus

🎓 Education

Dr. Mourad earned his Doctorate in Chemistry and Environment in 2019 from the Faculty of Sciences Semlalia, Cadi Ayyad University, Marrakesh, with a thesis on the “Physico-Chemical Characterization and Eco-treatment of Industrial Waste from Textile SMEs.” He holds a Specialized Master’s degree (2010–2012) in Safety, Hygiene, Environment, and Quality Management (HQSE) from the same institution. His academic foundation includes a License degree in Chemistry (2006), a Diploma of General University Studies (DEUG) in Chemistry (2004–2005), and a Baccalaureate in Experimental Sciences (2002) from Mohammed VI High School in Ouarzazate. Dr. Mourad has pursued ongoing professional development, including ISO 17025 laboratory competence training, integrated QHSE system management, and international reviewer certifications for academic journals. He also completed internships and fellowships in France, contributing to his expertise in green chemistry, chromatography, and advanced analysis techniques. 📘🧫📐

💼 Experience

Dr. Mourad has amassed diverse experience as a teacher, trainer, laboratory assistant, and QHSE manager across academia and industry. Since 2015, he has contributed to educational modules at Cadi Ayyad University in environmental engineering, water treatment, and organic chemistry. He has worked as a QSE Manager at SUPER FLOR (SARL) and as a co-manager for the SCIMATOP laboratory’s innovation project. His industrial experience includes water quality control, environmental auditing in textile production, and analysis of chemical risks. He has interned at INRA France and Université Grenoble Alpes, gaining exposure to advanced instrumentation and research methodologies. As a member of EcoVal Cooperative, he focuses on sustainable waste treatment. Mourad has also played significant roles in organizing international conferences on health, sustainability, and environmental sciences. His expertise extends to FTIR, UV, ICP, HPLC, BET, and more, making him a key figure in scientific innovation and ecological initiatives. 🏭🧪👨‍🏫

🏅 Awards and Honors

Dr. Mourad has received numerous certifications and honors reflecting his contributions to environmental science, analytical chemistry, and academic excellence. Notably, he holds a Certificate of Contribution to various academic programs and workshops at Cadi Ayyad University. He was awarded reviewer confirmation certificates for top-tier journals including Molecules, Foods, Processes, and Forests in 2022–2023. In 2014, he was recognized as a Young Climate Ambassador at COP 22 in Marrakesh. Mourad has also been actively involved in international symposia and congresses on food security, water quality, and sustainable agriculture. His leadership in organizing African congresses on environmental toxicology and health security has garnered recognition. His continuing education includes prestigious training in ISO systems, metrology, HACCP, and integrated QHSE management. These accolades underscore his commitment to interdisciplinary excellence, innovation, and environmental stewardship. 🏆🌱📜

🔬 Research Focus

Dr. Mourad’s research is rooted in environmental chemistry, phytochemistry, and instrumental analysis, with a focus on sustainable solutions for industrial waste and food chemistry. His PhD work addressed eco-treatment of textile industry waste using physico-chemical methods. He is deeply engaged in analyzing polyphenols, flavonoids, and other bioactive compounds from natural sources using chromatography, Soxhlet extraction, and spectroscopy. His expertise spans antioxidant activity, natural product extraction, and analytical method development. He explores the use of green chemistry principles in waste valorization and phytochemical research. Mourad’s scientific endeavors bridge academia and industry, supporting innovations in solar drying, instrumental techniques (HPLC, FTIR, ICP), and herbal medicine. Through interdisciplinary collaborations and cooperative initiatives like ECOVAL, he aims to advance eco-friendly technologies in waste management and food bioactivity. 🌿🔬♻️

Publication Top Notes

  • 📄 “Textile wastewater discoloration by Fenton oxidation process”Moroccan Journal of Chemistry, 2019. Cited by: 9.

  • 📄 “Comparative sorption isotherms of conserved Thymus satureioides”Moroccan Journal of Chemistry, 2016. Cited by: 5.

  • 📄 “Comparative moisture sorption isotherms, modelling and isosteric heat of sorption of controlled and irradiated Moroccan rosemary leaves”Industrial Crops and Products, 2016. Cited by: 31.

  • 📄 “Green chemistry for treatment of liquid discharges from a dyeing industry: bio coagulation and flocculation”Moroccan Journal of Chemistry, 2016. Cited by: 6.

  • 📄 “Valorisation of cellulosic waste basic cactus to prepare activated carbon”Journal of the Saudi Society of Agricultural Sciences, 2019. Cited by: 88.

  • 📄 “Decontamination by gamma irradiation at low doses of Thymus satureioides and its impact on physico-chemical quality”Food and Bioproducts Processing, 2016. Cited by: 10.

  • 📄 “Drying Characteristics and Kinetics Solar Drying of Moroccan Rosemary Leaves”Renewable Energy, 2017. Cited by: 32.

  • 📄 “Investigation of water adsorption and thermodynamic properties of stevia powder”Journal of Food Measurement and Characterization, 2016. Cited by: 7.

  • 📄 “Impact of particle size on functional, physicochemical properties and antioxidant activity of cladode powder (Opuntia ficus-indica)”Journal of Food Science and Technology, 2019. Cited by: 15.

  • 📄 “Impact of solar drying process on drying kinetics, and on bioactive profile of Moroccan sweet cherry”Renewable Energy, 2020. Cited by: 6.

Xuefeng Song | Photocatalysis | Best Researcher Award

Prof. Dr. Xuefeng Song | Photocatalysis | Best Researcher Award

Prof. Dr. Xuefeng Song, Shanghai Jiao Tong University, China

Prof. Dr. Xuefeng Song is a distinguished materials scientist specializing in functional micro/nanostructures, nanocomposites, and energy applications. He earned his Ph.D. in Materials Science from the Shanghai Institute of Ceramics, Chinese Academy of Sciences, in 2009. He further advanced his research as a Postdoctoral Fellow at the University of Cologne, Germany (2009-2012). Since 2012, he has been a key faculty member at Shanghai Jiao Tong University, leading groundbreaking research in photocatalysis, energy storage, and protective coatings. With over 100 publications in top-tier journals, 4,300+ citations, and 32 invention patents, his contributions to materials science are globally recognized. He has led over 20 major research projects, funded by prestigious institutions like the National Natural Science Foundation of China and the BMBF Fellowship in Germany. His numerous accolades, including the VinFuture Prize nomination and IAAM Fellowship, highlight his impact in the field.

Publication Profile

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Education 🎓📚

Prof. Dr. Xuefeng Song pursued his Ph.D. in Materials Science at the Shanghai Institute of Ceramics, Chinese Academy of Sciences, in 2009, focusing on the controlled synthesis of functional micro/nanostructures. He further enriched his academic expertise through a postdoctoral fellowship at the Institute of Inorganic Chemistry, University of Cologne, Germany, from 2009 to 2012, where he worked on innovative nanocomposite systems. Since 2012, he has been a faculty member at Shanghai Jiao Tong University, contributing to advanced research in energy materials and protective coatings. His academic journey is marked by extensive interdisciplinary research, blending chemistry, physics, and engineering to pioneer new material technologies. He has also contributed to three English-language academic monographs, enhancing global knowledge dissemination. His education provided a solid foundation for his pioneering work in photocatalysis, energy conversion, and nanostructured materials, positioning him as a leading scientist in materials research.

Experience 🏆🔬

Prof. Dr. Xuefeng Song has over a decade of research experience in materials science, focusing on nanostructured materials and energy applications. As a Principal Investigator, he has led over 20 major research projects, including those funded by the National Natural Science Foundation of China, the Shanghai Natural Science Foundation, and the HY Program of the Equipment Development Department. His expertise spans from laboratory research to industrial applications, particularly in photocatalysis, energy storage, and protective coatings. His work has led to significant advancements in sustainable energy solutions and advanced coatings. He has authored over 100 high-impact publications, earning 4,300+ citations, and filed 32 invention patents, with 28 already granted. His leadership in research has positioned him as an influential figure in nanomaterials and their applications in energy-efficient and environmentally friendly technologies, bridging the gap between scientific discovery and real-world innovation.

Awards & Honors 🏅🎖️

Prof. Dr. Xuefeng Song’s contributions to materials science have earned him numerous prestigious honors. He is a VinFuture Prize nominator, recognizing his influence in cutting-edge research. He has been awarded Fellowship of the International Association of Advanced Materials (IAAM) for his impact on materials innovation. As a Science Ambassador for Bentham Science Publishers, he actively promotes scientific advancements. He has also received the SMC-Chenxing Young Scholar Award, recognizing his outstanding early-career achievements. His research excellence has been acknowledged through prestigious talent programs, including the Longcheng Talent Program (Changzhou) and the Class B Scholar of the Ming Shi Zhi Xiang Program (Shaoxing). His global recognition, spanning academia and industry, underscores his exceptional contributions to nanomaterials, energy storage, and advanced coatings, making him a leading scientist in his field.

Research Focus 🔬⚡

Prof. Dr. Xuefeng Song’s research is centered on controlled synthesis of functional micro/nanostructures, the construction of nanocomposite systems, and their applications in photocatalysis, energy storage, and protective coatings. His work in photocatalysis focuses on developing advanced materials for efficient light-driven chemical reactions, crucial for environmental sustainability. His contributions to energy storage and conversion include innovations in battery and supercapacitor technologies, enhancing energy efficiency and performance. His research on protective coatings aims to develop high-performance, durable coatings for industrial applications. His interdisciplinary approach integrates chemistry, nanotechnology, and engineering to create next-generation materials for energy and environmental applications. His research has had a significant impact, with over 100 publications in top-tier journals, 4,300+ citations, and 32 patents, reinforcing his position as a leader in the field of advanced materials science. 🚀

Publication Top Notes

📄 Facile synthesis and hierarchical assembly of hollow nickel oxide architectures bearing enhanced photocatalytic properties | 🔗 X Song, L Gao | 🏛️ The Journal of Physical Chemistry C | 📅 2008 | 🔍 Cited by: 232

📄 Self‐Assembled α‐Fe₂O₃ Mesocrystals/Graphene Nanohybrid for Enhanced Electrochemical Capacitors | 🔗 S Yang, X Song, P Zhang, J Sun, L Gao | 🏛️ Small | 📅 2014 | 🔍 Cited by: 209

📄 Facile Synthesis of Nitrogen-Doped Graphene–Ultrathin MnO₂ Sheet Composites and Their Electrochemical Performances | 🔗 S Yang, X Song, P Zhang, L Gao | 🏛️ ACS Applied Materials & Interfaces | 📅 2013 | 🔍 Cited by: 177

📄 Mapping the surface adsorption forces of nanomaterials in biological systems | 🔗 XR Xia, NA Monteiro-Riviere, S Mathur, X Song, L Xiao, SJ Oldenberg, … | 🏛️ ACS Nano | 📅 2011 | 🔍 Cited by: 160

📄 Fabrication of hollow hybrid microspheres coated with silica/titania via sol–gel process and enhanced photocatalytic activities | 🔗 X Song, L Gao | 🏛️ The Journal of Physical Chemistry C | 📅 2007 | 🔍 Cited by: 156

📄 Covalently Coupled Ultrafine H-TiO₂ Nanocrystals/Nitrogen-Doped Graphene Hybrid Materials for High-Performance Supercapacitor | 🔗 S Yang, Y Lin, X Song, P Zhang, L Gao | 🏛️ ACS Applied Materials & Interfaces | 📅 2015 | 🔍 Cited by: 143

📄 Synthesis, characterization, and gas sensing properties of porous nickel oxide nanotubes | 🔗 X Song, L Gao, S Mathur | 🏛️ The Journal of Physical Chemistry C | 📅 2011 | 🔍 Cited by: 120

📄 Facile synthesis of polycrystalline NiO nanorods assisted by microwave heating | 🔗 X Song, L Gao | 🏛️ Journal of the American Ceramic Society | 📅 2008 | 🔍 Cited by: 116

📄 Synthesis, characterization, and optical properties of well-defined N-doped, hollow silica/titania hybrid microspheres | 🔗 X Song, L Gao | 🏛️ Langmuir | 📅 2007 | 🔍 Cited by: 116

📄 Active Fe₂O₃ nanoparticles encapsulated in porous g-C₃N₄/graphene sandwich-type nanosheets as a superior anode for high-performance lithium-ion batteries | 🔗 M Shi, T Wu, X Song, J Liu, L Zhao, P Zhang, L Gao | 🏛️ Journal of Materials Chemistry A | 📅 2016 | 🔍 Cited by: 106

📄 Heating-Rate-Induced Porous α-Fe₂O₃ with Controllable Pore Size and Crystallinity Grown on Graphene for Supercapacitors | 🔗 S Yang, X Song, P Zhang, L Gao | 🏛️ ACS Applied Materials & Interfaces | 📅 2015 | 🔍 Cited by: 104

📄 Phyllosilicate evolved hierarchical Ni-and Cu–Ni/SiO₂ nanocomposites for methane dry reforming catalysis | 🔗 T Wu, Q Zhang, W Cai, P Zhang, X Song, Z Sun, L Gao | 🏛️ Applied Catalysis A: General | 📅 2015 | 🔍 Cited by: 94

📄 ZnFe₂O₄ nanoparticles-cotton derived hierarchical porous active carbon fibers for high rate-capability supercapacitor electrodes | 🔗 S Yang, Z Han, F Zheng, J Sun, Z Qiao, X Yang, L Li, C Li, X Song, B Cao | 🏛️ Carbon | 📅 2018 | 🔍 Cited by: 90

📄 Surfactant-free hydrothermal synthesis of Cu₂ZnSnS₄ (CZTS) nanocrystals with photocatalytic properties | 🔗 J Wang, P Zhang, X Song, L Gao | 🏛️ RSC Advances | 📅 2014 | 🔍 Cited by: 89

📄 Crumpled nitrogen-doped graphene–ultrafine Mn₃O₄ nanohybrids and their application in supercapacitors | 🔗 S Yang, X Song, P Zhang, L Gao | 🏛️ Journal of Materials Chemistry A | 📅 2013 | 🔍 Cited by: 86

📄 Attapulgite modulated thorny nickel nanowires/graphene aerogel with excellent electromagnetic wave absorption performance | 🔗 F Sun, Q Liu, Y Xu, X Xin, Z Wang, X Song, X Zhao, J Xu, J Liu, L Zhao, … | 🏛️ Chemical Engineering Journal | 📅 2021 | 🔍 Cited by: 83

Conclusion

Prof. Dr. Xuefeng Song stands out as a highly accomplished researcher with a strong publication record, leadership in major projects, and a significant impact in materials science. His contributions to nanostructures, energy storage, and protective coatings, along with his extensive patent portfolio and global recognitions, make him a strong candidate for the Best Researcher Award. 🚀

Muhammad Junaid | Material science | Best Researcher Award

Dr. Muhammad Junaid | Material science | Best Researcher Award

Dr. Muhammad Junaid, Islamia University Of Bahawalpur, Pakistan

Dr. Muhammad Junaid is an Assistant Professor at the Institute of Physics, The Superior University Lahore, Multan Campus, Pakistan. He holds a Ph.D. in Semiconductor Nanotechnology from The Islamia University of Bahawalpur. With a strong background in nanomaterials synthesis, his research focuses on photocatalysts for hydrogen production, CO₂ reduction, and water splitting. He has published extensively in high-impact journals and actively contributes as a reviewer and editorial board member. Dr. Junaid has supervised multiple M.Phil. theses and led funded research projects on advanced nanomaterials. His expertise spans metal oxide thin films, graphene synthesis, and biosensors. He has presented at international conferences and authored academic books. Recognized for his contributions, he has received research grants and awards.

Publication Profile

Orcid

🎓 Education

Dr. Muhammad Junaid completed his Ph.D. in Semiconductor Nanotechnology (Physics) from The Islamia University Bahawalpur, Pakistan, focusing on metal oxide thin films for water splitting. He earned his M.Phil. in Nanotechnology from UMT Lahore, where he studied Ba-doped SrTiO₃ for hydrogen generation. His M.Sc. in Physics from Bahauddin Zakariya University Multan laid the foundation for his work in semiconductors. He holds a B.Sc. in Physics and Mathematics from Government College Civil Line, Multan. Earlier, he pursued his F.Sc. in Pre-Engineering from BISE Rawalpindi and Matriculation in Science from BISE Mardan, KPK. His education has equipped him with expertise in nanomaterials synthesis, thin films, and renewable energy applications.

👨‍🏫 Experience

Dr. Muhammad Junaid has over a decade of academic and research experience. Since 2020, he has been serving as an Assistant Professor at The Superior University Lahore, Multan Campus, specializing in physics and physical chemistry. Previously, he worked as a Lecturer at The Superior Group of Colleges/University Multan Campus (2015-2020) and Pak-Turk Maarif International Schools and Colleges (2014-2015). He has successfully supervised multiple M.Phil. research projects, focusing on nanomaterials for energy applications. His contributions include leading research on photocatalytic hydrogen generation and biosensors, securing significant research funding, and collaborating on international projects. Dr. Junaid is also an editorial board member and reviewer for prestigious scientific journals.

🏆 Awards & Honors

Dr. Muhammad Junaid has received several prestigious awards for his research and academic contributions. He secured major research grants, including funding from the Higher Education Commission (HEC) Pakistan and collaborative projects with China’s National Natural Science Foundation. He has been recognized as a distinguished researcher for his high-impact publications in renowned journals like the International Journal of Hydrogen Energy and Chemical Physics Letters. He has also received certifications for his editorial and reviewing contributions to journals such as Scientific Reports (Springer Nature) and Physica B Condensed Matter. His excellence in academia is reflected in his role as a mentor, guiding M.Phil. scholars in cutting-edge nanotechnology research.

🔬 Research Focus

Dr. Muhammad Junaid’s research primarily focuses on the development of photocatalysts for CO₂ reduction, water splitting, and hydrogen production. His work involves synthesizing metal oxide-based nanomaterials, including ZnO, NiO, MoO₃, and Ba-doped SrTiO₃, for renewable energy applications. He specializes in thin-film fabrication using techniques like physical vapor deposition (PVD) and sol-gel synthesis. His contributions extend to graphene-based materials, quantum dots, and biosensors for glucose and urea detection. He explores bandgap tailoring to optimize semiconductor efficiency for green energy solutions. His research projects are funded by national and international agencies, emphasizing sustainable energy and environmental applications.

Publication Top Notes

  • “Industry 4.0 enables supply chain resilience and supply chain performance” (2022) – Cited by 195.Google Scholar

  • “Effects of sustainable supply chain integration on green innovation and firm performance” (2022) – Cited by 169.Google Scholar

  • “A neutrosophic AHP and TOPSIS framework for supply chain risk assessment in automotive industry of Pakistan” (2019) – Cited by 116.Google Scholar

  • “Impact of green HRM practices on sustainable performance: mediating role of green innovation, green culture, and green employees’ behavior” (2023) – Cited by 96.Google Scholar+1Google Scholar+1

  • “Nexus between technology enabled supply chain dynamic capabilities, integration, resilience, and sustainable performance: An empirical examination of healthcare organizations” (2023) – Cited by 68.Google Scholar

  • “An empirical examination of sustainable supply chain risk and integration practices: A performance-based evidence from Pakistan” (2019) – Cited by 54.Google Scholar

  • “Relationship between human resource management practices, relationship commitment and sustainable performance” (2020) – Cited by 31.Google Scholar

  • “The role of diffusion of innovation theory towards the adoption of halal meat supply chain” (2023) – Cited by 24.Google Scholar

  • “Corporate governance mechanism and performance of insurers in Pakistan” (2020) – Cited by 18.Google Scholar

  • “Creating a sustainable future through Industry 4.0 technologies: untying the role of circular economy practices and supply chain visibility” (2024) – Cited by 17.Google Scholar

Conclusion 

Dr. Muhammad Junaid’s strong publication record, impactful research, secured research funding, and academic leadership make him a deserving candidate for the Research for Best Researcher Award. His contributions to nanotechnology, renewable energy, and advanced materials are of high significance to the scientific community, aligning well with the award’s criteria.

Luisa Andrade | Chemical Engineering | Best Researcher Award

Prof. Luisa Andrade | Chemical Engineering | Best Researcher Award 

Professor, at University of Porto – Faculty of Engineering, Portugal.

Luísa Manuela Madureira Andrade Silva is a distinguished researcher and Assistant Professor at the Chemical Engineering Department of the University of Porto. With an extensive background in chemical engineering and materials science, she specializes in solar energy harvesting and photocatalysis. Luísa has played a pivotal role in advancing perovskite solar cell technology, contributing to sustainable energy solutions. Her research has been widely recognized through prestigious awards and extensive publications in high-impact journals. She has collaborated with international research institutes and industries, further strengthening her expertise in renewable energy and innovative material development.

Professional Profile

Scopus

ORCID

Education 🎓

Luísa Andrade earned her Ph.D. in Chemical and Biological Engineering from the University of Porto in 2010, focusing on the study and characterization of Grätzel solar cells. Prior to that, she obtained her degree in Chemical Engineering from the same institution in 2006. Her academic journey includes postdoctoral research at LEPAE-FEUP, where she worked on photoelectrochemical cells for solar energy applications. She has also participated in specialized training programs, including research internships at École Polytechnique Fédéral de Lausanne, enhancing her expertise in renewable energy technologies.

Experience ⚖️

Since October 2019, Luísa has served as an Assistant Professor at the University of Porto’s Chemical Engineering Department. Previously, she was an Assistant Researcher at LEPABE-FEUP, leading the “Solar Group” and managing research teams working on solar energy technologies. Her international research collaborations include projects in Germany, Brazil, and Italy, focusing on redox flow battery systems and semiconductor materials for photoelectrochemical applications. With extensive experience in academia and industry partnerships, she has contributed significantly to the transition of laboratory research into industrial applications.

Research Interests 🌍

Luísa Andrade’s research focuses on renewable energy technologies, particularly perovskite solar cells, photocatalysis, and photoelectrochemical systems. She is interested in the scalability and industrialization of solar energy solutions, emphasizing sustainable materials and processes. Her work also explores the role of nanomaterials in energy conversion, advancing next-generation photovoltaic systems. Additionally, she investigates the environmental impact of energy technologies through life cycle assessment, ensuring sustainable development in the field of chemical engineering.

Awards & Recognitions 🏆

Luísa has received numerous awards for her contributions to chemical engineering and sustainable energy. She won first place in the Business Ignition Programme at the University of Porto for developing an innovative business plan. Additionally, she participated in the COHiTEC program, which supports technology-based entrepreneurship. Her Ph.D. dissertation was honored with distinction, and she has received multiple research grants from the Portuguese Foundation for Science and Technology (FCT) for her pioneering work in solar energy.

Top Noted Publications 📚

  • Príncipe, J., Andrade, L., Mata, T. M., Martins, A. A. (2025).
    Title: Comparative Life Cycle Assessment of Perovskite Solar Cell Production: Mesoporous n-i-p Versus Inverted p-i-n Architectures.
    Journal: Advanced Energy and Sustainability Research
    Focus: This study likely compares the environmental impacts of two main perovskite solar cell (PSC) architectures—mesoporous n-i-p and inverted p-i-n—using life cycle assessment (LCA) methods. It evaluates material usage, energy consumption, and carbon footprint to determine which structure is more sustainable.

  • Duarte, V.C.M., Andrade, L. (2024).
    Title: Recent Advancements on Slot-Die Coating of Perovskite Solar Cells: The Lab-to-Fab Optimisation Process.
    Journal: Energies
    Focus: This paper discusses improvements in slot-die coating techniques for PSCs, bridging the gap between laboratory-scale fabrication and large-scale industrial production. It may highlight process efficiency, scalability, and material optimization strategies.

  • Príncipe, J., Duarte, V.C.M., Mendes, A., Andrade, L. (2023).
    Title: Influence of the Transparent Conductive Oxide Type on the Performance of Inverted Perovskite Solar Cells.
    Journal: ACS Applied Energy Materials
    Focus: The research explores how different transparent conductive oxides (TCOs), such as ITO (indium tin oxide) and FTO (fluorine-doped tin oxide), affect the efficiency and stability of inverted perovskite solar cells. This could provide insights into optimizing the electrical and optical properties of PSCs.

  • Teixeira, C., Fuentes-Pineda, R., Andrade, L., Mendes, A. (2023).
    Title: Fabrication of Low-Cost and Flexible Perovskite Solar Cells by Slot-Die Coating for Indoor Applications.
    Journal: Materials Advances
    Focus: This study investigates the production of low-cost, flexible PSCs using slot-die coating, specifically for indoor energy harvesting applications. The research might discuss material choices, efficiency under low-light conditions, and potential commercial applications.

  • Castro, D., Duarte, V. C. M., Andrade, L. (2022).
    Title: Perovskite Solar Modules: Design Optimization.
    Journal: ACS Omega
    Focus: This paper likely examines design strategies to optimize perovskite solar modules for better efficiency, stability, and manufacturability. It may cover topics such as module architecture, interconnections, and encapsulation techniques.

Conclusion

Luísa Andrade is a strong candidate for the Best Researcher Award due to her extensive contributions to solar energy research, leadership in academia, and international collaborations. Strengthening her record with additional awards, patents, and larger-scale leadership roles would further solidify her candidacy.

 

Wang Liqiang | Catalytic hydrogenation | Best Researcher Award

Assoc. Prof. Dr. Wang Liqiang | Catalytic hydrogenation | Best Researcher Award

Assoc. Prof. Dr. Wang Liqiang, Zhengzhou University, China

Assoc. Prof. Dr. Wang Liqiang is a distinguished researcher in materials science and catalysis, currently serving at Zhengzhou University. With expertise in carbon-supported metal catalysts, hydrogenation reactions, and electrocatalysis, he has led multiple national research projects funded by the National Natural Science Foundation of China. He has authored numerous high-impact publications in ACS Catalysis, Advanced Materials, and Nano Research. Dr. Wang completed his PhD at Central South University and has a strong academic foundation in chemistry and materials science. His work focuses on developing sustainable catalytic materials for industrial applications.

Publication Profile

Google Scholar

Education 🎓

Dr. Wang Liqiang earned his PhD in Chemistry from Central South University (2013–2017), specializing in catalytic materials. He also completed his Master’s degree at the same institution (2010–2013), focusing on chemical engineering and nanomaterials. His undergraduate studies were at Ludong University (2006–2010), where he developed a solid foundation in chemistry and materials science.

Experience 💼

Dr. Wang has been an Associate Professor at Zhengzhou University since 2020, leading research on advanced catalytic materials. He previously worked as a Postdoctoral Researcher (2018–2020) at Central South University, focusing on metal-supported catalysts for hydrogenation reactions. His research has significantly contributed to the development of single-atom catalysts and electrocatalysis, addressing industrial and environmental challenges.

Awards and Honors 🏆

Dr. Wang has received recognition for his contributions to materials science and catalysis, including prestigious grants from the National Natural Science Foundation of China. His innovative research has earned him awards under the Youth Talent Program of China Association for Science and Technology. His work is widely cited, and he has been invited as a keynote speaker at various international conferences.

Research Focus 🔬

Dr. Wang specializes in catalytic hydrogenation, single-atom catalysts, and carbon-supported metal catalysts for industrial applications. His research aims to enhance catalytic efficiency using sustainable materials. He focuses on electronic structure regulation, metal-support interactions, and nanomaterials for energy conversion. His work contributes to green chemistry and sustainable catalytic processes. 🚀

Publication Top Notes

  • 🧬 Black phosphorus nanosheet-based drug delivery system for synergistic photodynamic/photothermal/chemotherapy of cancerCited by 10392016

  • 🧠 Black phosphorus nanosheets as a neuroprotective nanomedicine for neurodegenerative disorder therapyCited by 3632018

  • 🩺 Cell membrane camouflaged hollow prussian blue nanoparticles for synergistic photothermal-/chemotherapy of cancerCited by 3432017

  • MOF encapsulating N-heterocyclic carbene-ligated copper single-atom site catalyst towards efficient methane electrosynthesisCited by 3052022

  • 🛡️ Minimally invasive nanomedicine: nanotechnology in photo-/ultrasound-/radiation-/magnetism-mediated therapy and imagingCited by 2582022

  • 💧 Lewis Acid Site-Promoted Single-Atomic Cu Catalyzes Electrochemical CO2 MethanationCited by 1932021

  • 🧪 An alloy chemistry strategy to tailoring the d-band center of Ni by Cu for efficient and selective catalytic hydrogenation of furfuralCited by 1632020

  • 🟢 MOF-Templated Fabrication of Hollow Co4N@N-Doped Carbon Porous Nanocages with Superior Catalytic ActivityCited by 1412018

  • 🏥 Dual roles of protein as a template and a sulfur provider: a general approach to metal sulfides for efficient photothermal therapy of cancerCited by 1352018

  • 🩸 Two-dimensional semiconductors for ultrasound-mediated cancer therapy: the case of black phosphorus nanosheetsCited by 1342018