Omer Hassan Ali Mahfoodh | Analytical Chemistry | Excellence in Research Award

Dr. Omer Hassan Ali Mahfoodh | Analytical Chemistry | Excellence in Research Award

Universiti Sains Malaysia | Malaysia

Dr. Omer Hassan Ali Mahfoodh is a senior lecturer and distinguished applied linguistics researcher with extensive expertise in Second Language Writing, English for Academic Purposes, Applied Linguistics, Discourse Studies, and Second Language Acquisition, complemented by interests in Pragmatics and Translation Studies. His research primarily investigates language learning and teaching, bilingual literacy, intercultural communication, and courtroom translation, with a focus on both theoretical and applied dimensions. Dr. Omer Hassan Ali Mahfoodh has authored 35 peer-reviewed publications, which have collectively garnered 394 citations and contributed to advancing knowledge in EFL education, sociopragmatic competence, home literacy environments, and English-medium learning. He has also played a key role in developing pedagogical frameworks for low-proficiency learners and multilingual classrooms, combining quantitative, qualitative, and corpus-based methodologies. His work bridges research and practice, informing effective language teaching strategies, translation training, and intercultural communication in diverse educational contexts worldwide, reflecting a significant impact on both academic scholarship and professional language education.

Profile: Scopus | Orcid | Google Scholar | ResearchGate

Featured Publications

  • Dan, Z., & Mahfoodh, O. H. A. (2025). Home literacy environment of Chinese pre-schoolers: The effect of family income on bilingual reading resources and parental reading habits. Theory and Practice in Language Studies.

  • Wu, S., Amini, M., & Mahfoodh, O. H. A. (2025). Exploring challenges and solutions in English-to-Chinese courtroom translation: Insights from the Tokyo Trial and implications for translator training.

  • Wu, Z., Wang, X., Ismail, L., Ahmad, N. K., & Mahfoodh, O. H. A. (2025). Challenges and strategies in English-medium learning among Chinese international students in a Malaysian university.

 

Sisem Ektirici | Computational Chemistry | Young Scientist Award

Ms. Sisem Ektirici | Computational Chemistry | Young Scientist Award

Ms. Sisem Ektirici | The Cyprus Institute | Cyprus

Ms. Sisem Ektirici is a highly accomplished young researcher currently pursuing her PhD in Computational Sciences at The Cyprus Institute under the Marie Sklodowska-Curie Fellowship within the ENGAGE program, supervised by Prof. V. Harmandaris. She holds a strong interdisciplinary background, having completed a Bachelor’s degree in Chemistry, a Master’s in Quantum Chemistry, and a Master’s in Biochemistry at Hacettepe University, followed by doctoral studies in Biochemistry. Her research focuses on biochemical molecules, protein–polymer complexes, and computational simulations with applications in biochemistry and materials science. She has an impressive publication record in high-impact journals, contributed book chapters, and delivered presentations at international conferences and workshops. Beyond research, she serves as a student representative for Marie Curie Fellowships, has translation experience for scientific and literary works, and actively engages in professional development through summer schools and workshops in high-performance computing and drug design. Her multidisciplinary expertise and international experience mark her as a promising young scientist.

Publication Profile

Scopus

Education

Ms. Sisem Ektirici has pursued a comprehensive and interdisciplinary academic path, beginning with a Bachelor’s degree in Chemistry from Hacettepe University, where she built a strong foundation in chemical principles and laboratory techniques. She continued her studies with a Master’s program in Quantum Chemistry at Hacettepe University, gaining advanced knowledge in computational methods and theoretical modeling. Following this, she completed a second Master’s degree in Biochemistry under the supervision of Professor Dr. Adil Denizli, where her thesis focused on the separation of nucleosides using zwitterionic monolithic columns in capillary electrochromatography systems, demonstrating her ability to integrate experimental and analytical techniques. Ms. Ektirici then pursued doctoral studies in Biochemistry at Hacettepe University, further deepening her expertise in biochemical systems and molecular mechanisms. Currently, she is undertaking a PhD in Computational Sciences at The Cyprus Institute as part of the Marie Sklodowska-Curie ENGAGE program, bridging her background in chemistry, biochemistry, and computational methodologies to advance interdisciplinary research in molecular and computational sciences.

Honors and Achievements

Ms. Sisem Ektirici has received several prestigious honours and scholarships recognizing her academic excellence and research potential. She is a recipient of the Marie Sklodowska-Curie Fellowship through the European Doctorate Program “Enabling the Next Generation of Computational Physicists and Engineers,” reflecting her outstanding capabilities in computational sciences. Her dedication to biochemistry was acknowledged with the YOK Scholarship, supporting her doctoral research. Earlier in her career, she was awarded the TUBITAK Project Research Scholarship for her contributions to quantum chemistry, including the derivation of analytical energy gradient expressions of density-fitted coupled-cluster methods, effective and parallel programming, and applications to weak interactions. Additionally, she was recognized as the last year honor student in the Chemistry Department at Hacettepe University, highlighting her consistent academic performance and commitment to excellence. These awards collectively demonstrate her strong research potential, interdisciplinary expertise, and sustained commitment to scientific advancement.

Work Experience

Ms. Sisem Ektirici has accumulated diverse professional experiences and developed a broad range of skills alongside her academic pursuits. She serves as a student representative for the Marie Curie Fellowships within the ENGAGE Programme, demonstrating leadership, communication, and advocacy skills in supporting her peers. She has professional experience at DESU MEDICAL and Hacettepe Technocity, where she was responsible for preparing and translating new product files as well as translating ISO standards for new products, showcasing her technical proficiency and attention to detail. Ms. Ektirici is also an experienced English-Turkish and Turkish-English translator, having translated three best-selling books, reflecting her linguistic expertise and cultural competence. Beyond her academic and professional accomplishments, she has pursued swimming professionally for fifteen years and plays both classical and electric guitars, highlighting her discipline, creativity, and commitment to personal growth. Her combination of scientific, technical, and artistic skills underscores her well-rounded capabilities and adaptability.

Research Focus

Ms. Sisem Ektirici’s research primarily focuses on the intersection of computational sciences, biochemistry, and materials chemistry, with a strong emphasis on molecular-level investigations of biochemical systems. Her work includes detailed atomistic simulations of protein–polymer complexes, such as alpha-synuclein and poly(N-isopropylacrylamide), as well as studies on the thermal stabilization and pH-dependent behavior of protein–polyelectrolyte systems like poly(acrylic acid)/lysozyme. She integrates computational modeling with experimental approaches to understand complex molecular interactions and functional mechanisms, providing insights into biomolecular stability and behavior under various environmental conditions. Additionally, her research extends to applied analytical chemistry, including the separation of nucleosides and histidine enantiomers via advanced electrochromatography techniques, and environmental applications such as the life cycle assessment of membranes for heavy metal removal from water. Overall, her work reflects a multidisciplinary approach combining computational modeling, experimental biochemistry, polymer science, and analytical chemistry to advance understanding of molecular interactions and their practical applications in biomedical and environmental contexts.

Publication Top Notes

A Study of Alpha-Synuclein and Poly(N-Isopropylacrylamide) Complex Formation through Detailed Atomistic Simulations

Complexation and Thermal Stabilization of Protein–Polyelectrolyte Systems via Experiments and Molecular Simulations: The Poly(Acrylic Acid)/Lysozyme Case

Investigating the Effects of pH and Temperature on the Properties of Lysozyme–Polyacrylic Acid Complexes via Molecular Simulation

Life Cycle Assessment of Membranes for Removing Heavy Metals from Water and Wastewater

Computational Investigation of the Monomer Ratio and Solvent Environment for the Complex Formed between Sulfamethoxazole and Functional Monomer Methacrylic Acid

Separation of Histidine Enantiomers by Capillary Electrochromatography with Molecularly Imprinted Monolithic Columns

Conclusion

Ms. Sisem Ektirici is highly suitable for the Research for Young Scientist Award. Her combination of academic excellence, innovative research in biochemistry and computational sciences, international recognition, and proactive engagement in scientific communities makes her a promising candidate whose work reflects both depth and future potential.

 

Hu Xiong | Analytical Chemistry | Best Researcher Award

Prof. Hu Xiong | Analytical Chemistry | Best Researcher Award

Prof. Hu Xiong, Nankai University, China

Prof. Hu Xiong is a leading chemist at Nankai University, serving in the Research Center for Analytical Sciences. His research focuses on the design of NIR fluorescent probes and lipid nanoparticles for cancer imaging and precision drug delivery. A recipient of the Excellent Young Scholars Award and multiple NSFC grants, he has published in Angewandte, JACS, Nano Letters, and more. With a strong record of mentorship, he has supervised impactful Ph.D. work on bioimaging and nanomedicine. He is also a youth editorial board member and an active reviewer for top-tier journals.

Publication Profile

Scopus

🎓 Academic Background

Prof. Hu Xiong holds a strong foundation in chemistry, beginning with his B.S. degree from the Department of Chemistry at Zhengzhou University, Henan, China (2005–2009). He then pursued his Ph.D. in Organic Chemistry at the prestigious State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, CAS (2009–2014). His doctoral research was guided by renowned scholars Prof. Yong Tang and Prof. Zuowei Xie. This academic journey laid the groundwork for his expertise in organometallic chemistry and advanced research contributions in the field.

👨‍🏫 Academic Career

Prof. Hu Xiong began his academic career as a Postdoctoral Associate at the Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas, USA (2014–2018), where he worked alongside Prof. Daniel J. Siegwart on cutting-edge biochemical research. In December 2018, he returned to China and assumed the role of Professor at the Research Center for Analytical Sciences, Tianjin Key Laboratory of Biosensing and Molecular Recognition, Nankai University, Tianjin. His academic journey reflects a commitment to innovation and international collaboration in the fields of biosensing, molecular recognition, and analytical sciences

🏆 Awards and Honors

Prof. Hu Xiong has been recognized for his exceptional contributions to science and education. In 2019, he was honored with the prestigious “131 Innovative Talent Development Program” award , highlighting his innovative research capabilities. In 2023, his dedication to mentoring was acknowledged when he received the “Outstanding Master’s Thesis Supervisor at Nankai University” award 🎓. Most recently, in 2024, Prof. Hu Xiong was awarded The National Science Fund for Excellent Young Scholars , a testament to his significant impact and promise in advancing scientific research in China

📚 Teaching Responsibilities

Prof. Hu Xiong is actively engaged in teaching both undergraduate and graduate students. He teaches “Quantitative Chemical Analysis” to undergraduates, dedicating 34 class hours per semester to ensure a solid foundation in analytical chemistry. For graduate students, he offers “Graduate Research Skills Training”, providing 51 class hours per semester focused on developing advanced research techniques and critical scientific skills. Through these courses, Prof. Hu Xiong supports the academic growth and professional development of students at different levels, fostering the next generation of talented chemists and researchers

Research Focus

Prof. Hu Xiong’s research primarily focuses on the design and development of advanced near-infrared (NIR) fluorescent probes and biodegradable lipids for bioimaging and targeted drug delivery applications. His work involves creating activatable fluorescent probes for high-contrast in vivo imaging of diseases such as cancer, inflammatory bowel disease, and liver injury, emphasizing precise diagnostics and therapy guidance. Additionally, he innovates in mRNA delivery systems and phototheranostics for cancer treatment. His interdisciplinary research combines organic chemistry, nanotechnology, and molecular biology to advance non-invasive medical imaging and targeted therapeutics for clinical applications

Publication Top Notes

  • Access to Diverse Activatable Heptamethine Cyanine Probes with Low Intrinsic Fluorescence via 5-exo-trig Cyclization Strategy for High-Contrast Bioimaging In Vivo
    📅 2025

  • Crown-Like Biodegradable Lipids Enable Lung-Selective mRNA Delivery and Dual-Modal Tumor Imaging In Vivo
    📅 2024

  • Fast-Responsive HClO-Activated Near-Infrared Fluorescent Probe for In Vivo Diagnosis of Inflammatory Bowel Disease and Ex Vivo Optical Fecal Analysis
    📅 2024

  • Electron-Withdrawing Substituents Enhance Type-I PDT and NIR-II Fluorescence of BODIPY J-aggregates for Bioimaging and Cancer Therapy
    📅 2024

  • Diagnosis of Non-alcoholic Fatty Liver Disease via a H2S-responsive Bioluminescent Probe Combined with Firefly Luciferase mRNA Delivery
    📅 2024

  • Visualization of Endogenous Hypochlorite in Drug-induced Liver Injury Mice via a Bioluminescent Probe Combined with Firefly Luciferase mRNA-loaded Lipid Nanoparticles
    📅 2024

  • High Spatiotemporal Tracking of Intestinal Peristalsis and Bowel Disease via In Situ Generated NIR-II Cyanine-Albumin Complex
    📅 2024

  • Acid-promoted fluorescent probe for monitoring endogenous methylglyoxal in tumors and gastritis
    📅 2024

  • Electron-Withdrawing Substituents Allow Boosted NIR-II Fluorescence in J-Type Aggregates for Bioimaging and Information Encryption
    📅 2023

  • Modular Design of Biodegradable Ionizable Lipids for Improved mRNA Delivery and Precise Cancer Metastasis Delineation In Vivo
    📅 2023

  • “Dual-Key-and-Lock” NIR-II NSCyanines Enable High-Contrast Activatable Phototheranostics in Extrahepatic Diseases
    📅 2023

  • Non-Solvatochromic Cell Membrane-Targeted NIR Fluorescent Probe for Visualization of Polarity Abnormality in Drug-Induced Liver Injury Mice
    📅 2023

  • BOIMPY-based NIR-II Fluorophore with High Brightness and Long Absorption beyond 1000 nm for In Vivo Bioimaging: Synergistic Steric Regulation Strategy
    📅 2022

  • Three Birds with One Stone: Acceptor Engineering of Hemicyanine Dye with NIR-II Emission for Synergistic Photodynamic and Photothermal Anticancer Therapy
    📅 2022

  • Bichromatic Imaging with Hemicyanine Fluorophores Enable Simultaneous Visualization of Non-alcoholic Fatty Liver Disease and Metastatic Intestinal Cancer
    📅 2022

  • H2O2-activated NIR-II Fluorescent Probe with Large Stokes Shift for High-contrast Imaging in Drug-induced Liver Injury Mice
    📅 2022

  • An Acid-Enhanced OFF-ON Fluorescent Probe for the Detection of Hypochlorous Acid in Rheumatoid Arthritis
    📅 2022

  • Modular Design of High-Brightness pH-Activatable Near-Infrared BODIPY Probes for Noninvasive Fluorescence Detection of Deep-Seated Early Breast Cancer Bone Metastasis
    📅 2021

  • A Fast-Responsive OFF-ON Near-Infrared-II Fluorescent Probe for in Vivo Detection of Hypochlorous Acid in Rheumatoid Arthritis
    📅 2021

  • Development of pH-activatable fluorescent probes for rapid visualization of metastatic tumours and fluorescence-guided surgery via topical spraying
    📅 2021

 

Tarek Lemaoui | Polymer Chemistry | Best Researcher Award

Dr. Tarek Lemaoui | Polymer Chemistry | Best Researcher Award

Dr. Tarek Lemaoui at Khalifa University, United Arab Emirates

Dr. Tarek Lemaoui is a postdoctoral researcher in Chemical Engineering at Khalifa University, UAE, with expertise in artificial intelligence, green solvents, and molecular modeling. With a strong academic foundation and a research portfolio spanning over 50 publications and two US patent applications, his work bridges computational modeling and experimental validation. He is passionate about integrating AI with chemical processes to drive innovation in sustainable technologies. Dr. Lemaoui has contributed to international collaborations, mentored graduate students, and received recognition for both academic excellence and teamwork, establishing himself as a promising figure in the next generation of chemical engineers.

Publication Profile

Google Scholar

Academic Background

Dr. Lemaoui earned his Ph.D. in Chemical Engineering from Ferhat Abbas University (2018–2022), where he focused on deep eutectic solvents and QSPR modeling for diesel purification. He also completed his M.Sc. in Chemical Engineering (2016–2018) with distinction, developing models for solvent properties. His B.Sc. in Process Engineering (2013–2016) emphasized two-phase heat transfer. Throughout, he maintained top GPA rankings. He also holds a mathematics-focused high school diploma with a 89.5% score. His education reflects a consistent trajectory of academic excellence and a strong grounding in both theoretical and applied chemical and process engineering.

Professional Experience

Dr. Lemaoui is currently a postdoctoral fellow at Khalifa University (2023–present), conducting research on AI-integrated green solvents and 2D materials. Previously, he was a lecturer and researcher at Ferhat Abbas University (2022–2023), teaching core chemical engineering subjects and mentoring graduate students. From 2018 to 2022, he served as a teaching assistant, gaining experience in thermodynamics, molecular modeling, and AI. He also worked as a visiting researcher at Khalifa University (2019–2020) and completed an industrial internship in chemical quality control. His experience combines advanced research, teaching, and interdisciplinary collaboration across academia and industry.

Awards and Honors

Dr. Lemaoui has received several accolades throughout his academic journey. He ranked 1st in GPA during his bachelor’s and master’s studies, earning 5-Year Academic Excellence recognition in 2018. He also won first place in Algeria’s PhD competition in Chemical Engineering the same year. At Khalifa University, he received the 2024 Staff Excellence – Team Player Award, highlighting his collaborative spirit. His academic achievements consistently reflect high performance, dedication, and leadership in both education and research, reinforcing his standing as a top-tier researcher in his field.

Research Focus

Dr. Lemaoui’s research lies at the intersection of artificial intelligence, molecular modeling, and green chemical processes. He applies machine learning (ANN, SVM, RF, GB, MLR) to predict material properties, optimize separation techniques, and develop sustainable solvents. His work emphasizes deep eutectic solvents, 2D materials, QSPR models, and computational simulations like DFT and MD. He also explores water treatment methods, including membrane filtration, adsorption, and photocatalysis. Currently, he is developing a big-data platform for solvent property prediction, with the aim of creating an online tool for industry and academia to accelerate materials discovery and process design.

Publication Top Notes

📘 Schiff bases and their metal Complexes: A review on the history, synthesis, and applications

📅 Year: 2023 | 🧪 Journal: Inorganic Chemistry Communications | 🔬 Cited by: 272

📗 Prediction of electrical conductivity of deep eutectic solvents using COSMO-RS sigma profiles as molecular descriptors: a quantitative structure–property relationship study

📅 Year: 2020 | 🏭 Journal: Industrial & Engineering Chemistry Research | 📈 Cited by: 145

📙 Predicting the density and viscosity of hydrophobic eutectic solvents: Towards the development of sustainable solvents

📅 Year: 2020 | 🌱 Journal: Green Chemistry | 📊 Cited by: 122

Conclusion

Dr. Tarek Lemaoui is an exceptionally qualified candidate for the Best Researcher Award, demonstrating outstanding research productivity, innovation, and societal impact in chemical engineering, green chemistry, and AI-driven process optimization. With over 50 peer-reviewed publications, two US patent applications, and a strong citation record (h-index 28 on Google Scholar), his contributions are both prolific and influential. His pioneering work combines artificial intelligence, molecular modeling, and thermodynamic analysis to develop sustainable materials and separation processes, addressing critical global challenges in energy and environment. Recognized with academic honors, including top national rankings and a Staff Excellence Award, Dr. Lemaoui also excels in mentoring and international collaboration, making him a well-rounded and impactful researcher in both academic and industrial contexts.

Zeinab Mozafari | Analytical Chemistry | Women Researcher Award

Dr. Zeinab Mozafari | Analytical Chemistry | Women Researcher Award

Researcher at SHAHROOD UNIVERSITY of technology, Iran

Dr. Zeinab Mozafari is a Ph.D. holder in Analytical Chemistry from Shahrood University of Technology (2017-2022). Her expertise spans instrumental analysis 🧪 (AAS, UV-Vis, ICP), drug design 💊 (molecular docking, QSAR modeling), and chemometrics 📊 (ANN, random forest). She leads chemistry and quality control labs in the copper mineral processing industry and lectures at Shahrood University. Dr. Mozafari has published extensively in QSAR modeling and computational chemistry, contributing to high-impact journals. Her research focuses on variable selection techniques in QSPR studies.

Publication Profile

Google Scholar

🎓 Education

Dr. Zeinab Mozafari holds a Ph.D. in Analytical Chemistry (2017-2022) from Shahrood University of Technology, where she focused on applying penalized regression techniques for variable selection in QSAR and QSPR studies 🧪. Her research was supervised by Dr. Mansour Arab Chamjangali, with advisors Dr. Mohammad Arashi and Dr. Nasser Goudarzi. She earned her M.Sc. (2014-2016) in Analytical Chemistry, studying the QSAR of pyridine and pyrimidine derivatives as HIV inhibitors 🦠. Dr. Mozafari completed her B.Sc. in Pure Chemistry (2010-2014) at the University of Guilan, Rasht, Iran, building a strong foundation in chemical sciences ⚗️.

🏆 Honors and Awards

Dr. Zeinab Mozafari has received several prestigious accolades for her outstanding academic and research achievements 🌟. In 2021, she was recognized as the Best Ph.D. Student Researcher at Shahrood University of Technology for her contributions to analytical chemistry 🧪. She was also honored as the Best Ph.D. Student in Analytical Chemistry in 2018, showcasing her excellence in the field. Her academic brilliance was evident early on when she was named the Best M.Sc. Student in Analytical Chemistry in 2015. These awards highlight her dedication, innovation, and expertise in analytical and computational chemistry 🔬.

 🔬 Research Interests

Dr. Zeinab Mozafari’s research focuses on both instrumental and theoretical aspects of analytical chemistry. Her expertise in instrumental techniques 🧪 includes Atomic Absorption Spectroscopy (AAS), Ultraviolet-Visible Spectroscopy (UV-Vis), Inductively Coupled Plasma (ICP), sample preparation, and titrimetric analysis. She is also deeply engaged in drug design 💊, specializing in molecular docking, molecular dynamics, and QSAR modeling, with proficiency in software like Autodock and Discovery Studio. Additionally, her work in chemometrics 📊 involves variable selection methods, artificial neural networks, random forest, and QSPR modeling, utilizing advanced tools such as R, R-Studio, and MATLAB for predictive analytics.

Publication Top Notes

1️⃣ LASSO-BR-ANN for QSAR studies – Chemometrics and Intelligent Laboratory Systems, 22 citations, 📅 2020 🔬📊
2️⃣ Ridge regression with new variable elimination in QSAR – Chemometrics and Intelligent Laboratory Systems, 12 citations, 📅 2023 🤖📈
3️⃣ Radial distribution functions in QSAR of 4-anilinoquinazoline derivatives – Structural Chemistry, 12 citations, 📅 2020 🧬💊
4️⃣ LAD-LASSO in ANN-based QSAR for potent inhibitors – Chemometrics and Intelligent Laboratory Systems, 9 citations, 📅 2022 🧪🧠
5️⃣ QSRR models for VOCs using ANN – Journal of the Iranian Chemical Society, 7 citations, 📅 2022 📡📉
6️⃣ SCAD as a variable selection method in ANN-based QSAR – Journal of Chemometrics, 7 citations, 📅 2021 📊⚙️
7️⃣ Ligand–receptor interactions in QSAR using RF-ANN – Chemical Biology & Drug Design, 7 citations, 📅 2020 🏥🔍
8️⃣ QSAR model for 3CLPro inhibitors as anti-SARS-CoV-2 agents – SAR and QSAR in Environmental Research, 6 citations, 📅 2021 🦠💊
9️⃣ 1,2,3-triazoles-linked pyrazole carboxamides as anti-microbial and anti-cancer agents – Results in Chemistry, 📅 2024 🦠🧪
🔟 LM-ANN-based QSAR model for NNRTI inhibitors – Network Modeling Analysis in Health Informatics and Bioinformatics, 📅 2020 🧬💻

 

 

Eda Buker | Analytical Chemistry | Best Researcher Award

Dr. Eda Buker | Analytical Chemistry | Best Researcher Award

Dr. Eda Buker, Gazi University, Romania

Dr. Eda Büker Bıyık is an Associate Professor at the Faculty of Pharmacy, Gazi University, Turkey, specializing in pharmaceutical sciences with a focus on drug, food, and plant analysis. She holds a B.Sc. (2007) and M.Sc. (2010) from Gazi University, followed by a Ph.D. (2017) in Analytical Chemistry from Ankara University. Dr. Büker’s research interests include drug analysis, food analysis, chemometrics, and advanced instrumentation techniques like HPLC, UPLC, and spectrophotometry. She has published extensively with over 100 citations and an H-index of 6. Dr. Büker has also worked on the antiviral potential of medicinal plants, and her teaching experience spans various universities and subjects, including herbal treatment and pharmaceutical sciences. She has contributed to numerous international conferences and has been involved in several prestigious research positions throughout her career.

Publication Profile

Scopus

Education 🎓

Dr. Eda Buker pursued her education in prestigious institutions, earning a B.Sc. in Chemistry from Gazi University, Ankara (2003-2007) with a GPA of 3.30/4.00. She continued her studies at Gazi University, where she earned a Master’s degree in Physico Chemistry (2007-2010) with a GPA of 3.35/4.00. Further advancing her academic journey, Dr. Buker completed her Ph.D. in Analytical Chemistry at Ankara University (2010-2017) with an outstanding GPA of 4.00/4.00. 🎓📚 Her academic excellence demonstrates her commitment and expertise in chemistry and analytical fields.

Employment Experience 💼

Dr. Eda Buker currently serves as an Associate Professor at the Faculty of Pharmacy, Gazi University, in Ankara, Turkey. 🏫💊 With years of expertise in the field of analytical chemistry, she has made significant contributions to both teaching and research. Her position allows her to shape the next generation of pharmacists while advancing research in the pharmaceutical sciences. At Gazi University, Dr. Buker continues to foster innovation and academic excellence, making a notable impact in her field. 🌟📖 Her dedication to the profession is reflected in her esteemed role at the university.

Work Experience 💼

Dr. Eda Buker has an extensive work history, with a focus on academia and research in the pharmaceutical and chemical fields. 🌟 Since 2022, she has served as an Associate Professor at Gazi University, Faculty of Pharmacy, specializing in Basic Pharmaceutical Sciences. Previously, she was an Assistant Professor at the same institution. From 2019 to 2022, Dr. Buker was an invited lecturer at Marmara University. Her expertise also extended to government roles, serving as an expert for the President of Turkey and the Ministry of Agriculture and Forestry. 🌱 She has worked in various research centers and pharmaceutical companies, contributing significantly to the field. 🧪

Teaching Experience 📚

Dr. Eda Buker has taught a wide range of subjects, blending traditional knowledge with modern scientific practices. 🌿 She has imparted valuable insights on Traditional and Complementary Medicine and Herbal Treatment Methods at Marmara University. At Gazi University, she led courses on Ancient Seeds and their Health Effects. In addition, her expertise spans core scientific subjects, including General Chemistry, Analytical Chemistry, Physical Chemistry, and Instrumental Analysis. 🔬 Dr. Buker also teaches specialized topics such as Chemometrics, Experimental Design and Optimization, and Analytical Chemistry Laboratory, ensuring a comprehensive education for her students. 📊

Research Focus 🔬

Dr. Eda Buker’s research primarily focuses on the application of advanced analytical techniques in pharmaceutical and chemical analysis. Her work includes the development of methods such as continuous wavelet transforms for precise estimation of pharmaceutical compounds like domperidone and lansoprazole in capsule formulations. 💊 Additionally, she explores thin layer chromatography and image processing for the rapid detection of adrenergic drugs in sports, contributing to both pharmaceutical analysis and sports science. Her expertise lies in analytical chemistry, instrumental analysis, and chemical detection methods, enhancing the accuracy and speed of drug testing. 📊🔬

Publication Top Notes

Application of continuous wavelet transforms for simultaneous estimation of domperidone and lansoprazole in capsule formulations

New method for rapid detection and simultaneous determination of prohibited adrenergic drugs in sports using thin layer chromatography and image processing

 

 

 

Jean-François Silvain | Solid State Chemistry | Outstanding Scientist Award

Dr. Jean-François Silvain | Solid State Chemistry | Outstanding Scientist Award

Dr. Jean-François Silvain, Institut de Chimie de la Matière Condensée de Bordeaux, France

Dr. Jean-François Silvain is a Senior Researcher at the “Institut de Chimie de la Matière Condensée de Bordeaux” (ICMCB-CNRS) and an Adjunct Professor of Engineering at the University of Nebraska-Lincoln. His academic background includes a Baccalauréat in Mathematics and Technology (1977), a Master’s in Material Science (1982), and a PhD from the University of Poitiers (1984), with research focused on crystallography and microstructural studies in materials science. Over the years, Dr. Silvain has contributed extensively to the study and development of composite materials, particularly metal and ceramic matrix composites, and has over 200 journal papers and 170 conference papers to his name. His current research interests include the fabrication of novel materials with adaptive physical and mechanical properties, metal powders, and additive manufacturing. He has also chaired several international conferences, including the Powder Metallurgy Conference in 2012.

Publication Profile

Scopus

Educational Background 📚

Dr. Jean-François Silvain’s academic journey began with a Baccalauréat E in Mathematics and Technology (1976-1977). He pursued a Master of Material Science (DEA) at the University of Sciences, Poitiers (1977-1982), where he later completed his Ph.D. in Materials Science (1982-1984), focusing on crystallographic studies of polycrystalline silicon for solar cells. He continued his research with a second Ph.D. at the University of Poitiers (1984-1987), specializing in microstructural studies of “soft” and “hard” magnetic materials. Dr. Silvain’s education laid a strong foundation for his distinguished career in material science. ⚛️

 

Research Experience 🔬

Dr. Jean-François Silvain has an extensive research career, starting as a Ph.D. researcher at the University of Poitiers (1982-1984), where he focused on dislocations and their electrical behavior using TEM and EBIC studies. He then worked as a Post-doctoral researcher at Carnegie Mellon University (1984-1987), investigating magnetic thin films and garnet substrates. He continued his work as a CNRS research fellow in various French institutions (1988-2001), studying metal matrix composites and thin films. Later, Dr. Silvain was a Senior Researcher at NIMC, Tsukuba (1998) and returned to Bordeaux, contributing to advancements in surface treatments and composite materials. 🌍🔧

 

Publication Top Notes

  • Pressureless sintering of Al/diamond materials using AlSi12 liquid phase (Cuzacq, L., Atchi, I., Bobet, J.-L., Lu, Y., Silvain, J.-F.) – Materials Letters, 2025, 381, 137788 📄🔬
  • Non-sticky superhydrophobicity on polypropylene surfaces achieved via single-step femtosecond laser-induced processing in n-hexadecane liquid (Dong, H., Huang, X., Wu, Z., Li, Y., Lu, Y., Silvain, J.-F.) – Optics and Laser Technology, 2025, 181, 111843 📄💧
  • Diamond coatings on copper surfaces through interface engineering (Wu, Z., Mao, A., Wadle, L., Cui, B., Lu, Y., Silvain, J.-F.) – Diamond and Related Materials, 2024, 149, 111549 💎🔧
  • Generation of nano-to-microplastics from polypropylene surfaces via femtosecond laser ablation in liquids with different viscosities (Dong, H., Huang, X., Wu, Z., Li, Y., Lu, Y., Silvain, J.-F.) – Applied Surface Science, 2024, 670, 160661 🌍💥
  • Raman Spectroscopy and Microstructural Characterization of Hot-Rolled Copper/Graphene Composite Materials (Bident, A., Grosseau-Poussard, J.-L., Delange, F., Veillere, A., Silvain, J.-F.) – Inorganics, 2024, 12(8), 227 🔬📊
  • Spatiotemporal Reaction Dynamics Control in Two-Photon Polymerization for Enhancing Writing Characteristics (Mao, A., Fess, S., Kraiem, N., Harding, D., Lu, Y., Silvain, J.-F.) – Advanced Materials Technologies, 2024, 9(10), 2400077 🖋️🔬
  • Diamond coatings on femtosecond-laser-textured stainless steel 316 surfaces for enhanced adherence (Wu, Z., Sun, W., Mao, A., Cui, B., Lu, Y., Silvain, J.-F.) – Diamond and Related Materials, 2024, 142, 110744 💎🔥
  • Time-resolved imaging of microscale dynamics in laser drying of silicon wafers (Wu, Z., Huang, X., Sun, W., Wang, X., Lu, Y., Silvain, J.-F.) – Applied Surface Science, 2024, 645, 158844 ⏱️💻
  • Delicate control of graphite flakes alignment in the copper matrices via powder selections and filling processes (Zheng, D., Huang, Z., Shen, Z., Ji, G., Silvain, J.-F.) – Materials Research Express, 2024, 11(1), 016517 🖋️🪶
  • Fabrication and characterization of copper and copper alloys reinforced with graphene (Bident, A., Delange, F., Labrugere, C., Lu, Y., Silvain, J.-F.) – Journal of Composite Materials, 2024, 58(1), 109–117 🛠️🪙

 

Endalkachew Etana | Analytical Chemistry | Excellence in Research

Mr. Endalkachew Etana | Analytical Chemistry | Excellence in Research

Lecturer, Mattu University, Ethiopia

Mr. Endalkachew Etana 🇪🇹 holds a BSc in Chemistry from Mizan Tepi University (2014, CGPA: 3.72) and an MSc in Analytical Chemistry from Ambo University (2021, CGPA: 3.90). He has extensive teaching experience in Analytical Chemistry, Instrumental Analysis, and Environmental Chemistry. As a researcher, he has published works on trace heavy metals, greener microextraction methods, and toxic elements in agricultural soils. His awards include the Best Paper Award at SIST-SHE 22, and he actively contributes to academic committees and peer reviews. Proficient in SPSS, Mendeley, and data analysis, he is passionate about laboratory experiments and educational development. 📚🔬

 

Publication Profile

Scopus

Educational Background 🎓📘

Mr. Endalkachew Etana 🇪🇹 earned his BSc in Chemistry from Mizan Tepi University, Ethiopia, in 2014, graduating with an impressive CGPA of 3.72. Building on his strong foundation, he pursued an MSc in Analytical Chemistry at Ambo University, Ethiopia, completing it in 2021 with a stellar CGPA of 3.90. His academic journey reflects a dedication to excellence in the field of chemistry, showcasing a passion for advancing his knowledge and skills in analytical methodologies. This educational background has laid the groundwork for his contributions to research and teaching in chemistry. 🔬📚

 

Teaching Experience 👨‍🏫🔬

Mr. Endalkachew Etana has extensive teaching experience in various chemistry disciplines, reflecting his expertise and passion for education. He has taught Analytical Chemistry and its practical applications, along with Instrumental Analysis I and II, ensuring students gain both theoretical and hands-on knowledge. His courses include Real Sample Analysis, Environmental Chemistry, and Agricultural Chemistry, emphasizing real-world applications of chemistry in diverse fields. Through his engaging teaching approach, Mr. Etana fosters critical thinking and practical skills, empowering students to excel in analytical and environmental research. His commitment to knowledge-sharing inspires future chemists and researchers. 📘🧪🌱

 

Research Experience 🧪📚

Mr. Endalkachew Etana has actively contributed to research in analytical chemistry, focusing on environmental and food safety. His Bachelor’s thesis (2014) explored the “Determination of the Concentration of K⁺, Na⁺, and Fe²⁺ in Achane and Shay Rivers,” offering insights into water quality in Tepi Town. For his Master’s thesis (2021), he investigated the “Physicochemical Characterization and Determination of Trace Heavy Metals in White Sugar Products of Ethiopia,” addressing health risks associated with contaminants. His research reflects a commitment to solving real-world challenges, emphasizing environmental sustainability and public health. 🌍🍭🔬

 

Research Focus 🔬🌿💧

Mr. Endalkachew Etana’s research focuses on environmental analytical chemistry, emphasizing sustainable and health-conscious methodologies. His studies include greener microextraction techniques for detecting pesticide residues in water, contributing to eco-friendly practices 🌱💧. Additionally, he explores trace heavy metals in food products, assessing their potential health risks to ensure safety and compliance 🍭⚠️. Through innovative approaches in water quality analysis and food safety, Mr. Etana addresses critical challenges in environmental sustainability and public health, showcasing a dedication to advancing analytical chemistry for real-world applications. 🌍🧪

 

Publication Top Notes 📚

  • A development in greener microextraction methods for analysis of pesticide residues in environmental water samples: A review 🌿💧 (Published: 2024)
  • Proximate analysis, levels of trace heavy metals and associated human health risk assessments of Ethiopian white sugars 🍭⚠️ (Published: 2024, Cited by: 1)

 

 

 

Sheng Bing Wang | Analytical Chemistry | Best Researcher Award

Mr. Sheng Bing Wang | Analytical Chemistry | Best Researcher Award

Mr. Sheng Bing Wang, Gansu Agricultural University, China

Mr. Sheng-bing Wang is a dedicated researcher at Gansu Agricultural University, specializing in natural product separation and analytical chromatography. He earned his Bachelor’s degree in Applied Chemistry (2018) and Master’s degree in Chemistry (2022) from the same institution. Wang has contributed to high-impact journals with two notable publications: one on Glabridin separation using high-speed countercurrent chromatography and another on maslinic and oleanolic acids separation, highlighting their antibacterial activities. His work demonstrates proficiency in innovative chromatography techniques. Sheng-bing is committed to advancing analytical chemistry and separation science. 🌟🔬

Publication Profile

Orcid

Academic and Professional Background

Mr. Sheng-bing Wang is an accomplished researcher with a strong foundation in Applied Chemistry and Chemistry. He completed his Bachelor’s degree in Applied Chemistry from Gansu Agricultural University in 2018, followed by a Master’s degree in Chemistry from the same institution in 2022. Throughout his academic journey, Wang has focused on the separation and analysis of natural products and analytical chromatography. His research work has been published in prestigious journals, showcasing his expertise in innovative techniques for natural product separation. Wang’s academic background demonstrates his commitment to advancing analytical chemistry. 🌱📚

 

Areas of Research

Mr. Sheng-bing Wang’s research focuses on the separation and analysis of natural products, a field that combines his expertise in analytical chemistry and chromatography. His work primarily explores innovative techniques to separate valuable bioactive compounds from natural sources, which are essential for various applications in pharmaceuticals and natural product industries. Wang has applied advanced high-speed countercurrent chromatography to enhance the efficiency and selectivity of separation processes. His research is vital in advancing analytical methods for natural product isolation, contributing to a deeper understanding of bioactive substances and their potential benefits. 📊🧪

 

Publications

  • Comparison of Different High-Speed Countercurrent Chromatography Injection Modes for the Separation of Glabridin (2024) – Journal of Separation Science 🧪
  • Effective Separation of Maslinic Acid and Oleanolic Acid from Olive Pomace Using High-Speed Shear Off-line Coupled with High-Speed Countercurrent Chromatography and Their Antibacterial Activity Test (2024) – Journal of Chromatography B 🌿

 

Enayatollah Moradi Rufchahi | Chemistry | Best Researcher Award

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi | Chemistry | Best Researcher Award

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi, Islamic Azad University, Iran

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi is an expert in Organic Chemistry at the Islamic Azad University, Lahijan Branch, Iran. He holds a Ph.D. in Organic Chemistry from Guilan University (2009), where he researched azo dyes’ synthesis and spectroscopic properties. His research interests include the design, synthesis, and structural characterization of azo dyes and pigments, synthetic organic chemistry, and organic medicinal chemistry. He has a strong academic background with an MSc from the University of Tehran and a BSc from Guilan University. Dr. Moradi Rufchahi is also active in scholarly platforms such as Google Scholar and Scopus. 📚🔬🧪

 

Academic Background

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi is a distinguished scholar in Organic Chemistry with a Ph.D. from Guilan University (2009). His doctoral research focused on the Synthesis and Spectroscopic Properties of Some New Azo Dyes under the guidance of Prof. M.R. Yazdanbakhsh. He completed his MSc in Organic Chemistry at the University of Tehran in 1998, exploring Hydroxylation of Alkenes with KMnO4 in the presence of quaternary ammonium salts as phase transfer catalysts. Dr. Moradi Rufchahi also holds a BSc in Pure Chemistry from Guilan University, earned in 1995. 🎓🔬📘

 

Research Interests

Assoc. Prof. Dr. Enayatollah Moradi Rufchahi’s research focuses on the design and synthesis of azo dyes and pigments, exploring their spectroscopic properties and structural characterization. His work delves into synthetic organic chemistry, where he develops novel chemical compounds and reaction methodologies. Additionally, Dr. Moradi Rufchahi is interested in organic medicinal chemistry, working to identify and synthesize compounds with potential therapeutic applications. His research contributes to advancements in both the chemical and medicinal fields. 🔬💡🎨💊

Research Focus

The research of MR Yazdanbakhsh, H Yousefi, and their collaborators primarily focuses on the synthesis, characterization, and biological activity of azo dyes and heterocyclic compounds. Their studies cover a range of chemical properties, including solvatochromism, tautomerism, and spectroscopic characteristics. These researchers are also investigating antimicrobial activity and the application of these dyes in various fields, such as textile dyeing and material science. Their work contributes to organic chemistry, medicinal chemistry, and chemical applications with an emphasis on sustainable materials. 🌈🧪🔬🧬

 

Publication Top Notes

  • Synthesis, spectral characterization and antimicrobial activity of some new azo dyes derived from 4, 6-dihydroxypyrimidine – Cited by 84 (2012) 🧪🔬
  • Synthesis of some new azo dyes derived from 4-hydroxy coumarin and spectrometric determination of their acidic dissociation constants – Cited by 80 (2007) 🧫
  • Tautomerism, solvatochromism, preferential solvation, and density functional study of some heteroarylazo dyes – Cited by 66 (2019) 💻🧑‍🔬
  • Synthesis, characterization and spectroscopic properties of some new azo disperse dyes derived from 4-hydroxybenzo [h] quinolin-2-(1H)-one – Cited by 56 (2012) 🎨💡
  • Synthesis, spectral properties, biological activity and application of new 4-(benzyloxy) phenol derived azo dyes for polyester fiber dyeing – Cited by 52 (2013) 🧵💧
  • Solvatochromism, tautomerism and dichroism of some azoquinoline dyes in liquids and liquid crystals – Cited by 52 (2012) 🔬🌈
  • Photo-physical and structural studies of some synthesized arylazoquinoline dyes – Cited by 36 (2017) 🌞🔬
  • Solvatochromism and dichroism of fluorinated azoquinolin-8-ol dyes in liquid and liquid crystalline solutions – Cited by 36 (2008) 🌐📘
  • Novel azo dyes derived from 8-methyl-4-hydroxyl-2-quinolone: Synthesis, UV–vis studies and biological activity – Cited by 34 (2013) 🧪💡
  • Synthesis of 6-chloro and 6-fluoro-4-hydroxyl-2-quinolone and their azo disperse dyes – Cited by 30 (2010) 🌟🔬