Bengang XING | Chemistry | Best Researcher Award

Bengang XING | Chemistry | Best Researcher Award

Prof Bengang XING ,Nanyang Technological university,Singapore

Dr. Bengang Xing, FRSC, is a distinguished Full Professor at Nanyang Technological University (NTU), Singapore, renowned for his pioneering work in Chemical Biology and Nano-theranostics. With a Ph.D. from Nanjing University, China, he held research positions at prestigious institutions globally before joining NTU. Dr. Xing’s expertise spans molecular probe design, biomedical imaging, and medicinal chemistry, reflected in over 100 selective publications and numerous patents. A Fellow of the Royal Society of Chemistry, he has received multiple awards, including the Reaxys PhD Prize and Young Innovator Award. Dr. Xing’s impactful research continues to advance interdisciplinary frontiers in science. 🌟🔬

Publication profile

google scholar

Research focus

Dr. Bengang Xing’s research encompasses a broad spectrum of interdisciplinary fields, primarily focusing on Chemical Biology, Molecular Probe Design, Biomedical Fluorescent Imaging, Medicinal Chemistry, and Nano-theranostics. Through his pioneering work, he leverages molecular engineering to develop innovative probes and nanomaterials for visualizing and understanding biological processes at the molecular level. His expertise lies in designing advanced imaging agents and therapeutic platforms, facilitating precise diagnosis and targeted treatment of diseases. Dr. Xing’s contributions have significant implications for both fundamental research and clinical applications, promising breakthroughs in personalized medicine and precision healthcare. 🧪🔬🩺

Publication top notes

Real-time monitoring of cell apoptosis and drug screening using fluorescent light-up probe with aggregation-induced emission characteristics

In vitro and in vivo uncaging and bioluminescence imaging by using photocaged upconversion nanoparticles

Recent advances in functional nanomaterials for light–triggered cancer therapy

Hydrophobic interaction and hydrogen bonding cooperatively confer a vancomycin hydrogel: a potential candidate for biomaterials

In vivo covalent cross-linking of photon-converted rare-earth nanostructures for tumour localization and theranostics

Near‐infrared light‐mediated photoactivation of a platinum antitumor prodrug and simultaneous cellular apoptosis imaging by upconversion‐luminescent nanoparticles

Multifunctional mesoporous silica nanoparticles for cancer‐targeted and controlled drug delivery

Synthesis and Optimization of MoS2@Fe3O4‐ICG/Pt(IV) Nanoflowers for MR/IR/PA Bioimaging and Combined PTT/PDT/Chemotherapy Triggered by 808 nm Laser

Recent advances in near-infrared emitting lanthanide-doped nanoconstructs: Mechanism, design and application for bioimaging

Design of coordination polymer gels as stable catalytic systems

Recent progress in near infrared light triggered photodynamic therapy

Au2Pt-PEG-Ce6 nanoformulation with dual nanozyme activities for synergistic chemodynamic therapy/phototherapy

Novel fluorogenic substrates for imaging β-lactamase gene expression

NIR light controlled photorelease of siRNA and its targeted intracellular delivery based on upconversion nanoparticles

Simple and rapid synthesis of ultrathin gold nanowires, their self-assembly and application in surface-enhanced Raman scattering

NIR photoresponsive crosslinked upconverting nanocarriers toward selective intracellular drug release

Recent advances of light-mediated theranostics

Gold and hairpin DNA functionalization of upconversion nanocrystals for imaging and in vivo drug delivery

A light-up probe with aggregationhttps://scholar.google.com/citations?view_op=view_citation&hl=en&user=Zv-X4JEAAAAJ&citation_for_view=Zv-X4JEAAAAJ:4OULZ7Gr8RgC-induced emission characteristics (AIE) for selective imaging, naked-eye detection and photodynamic killing of Gram-positive bacteria

Semiconducting photothermal nanoagonist for remote-cohttps://scholar.google.com/citations?view_op=view_citation&hl=en&user=Zv-X4JEAAAAJ&citation_for_view=Zv-X4JEAAAAJ:eJXPG6dFmWUCntrolled specific cancer therapy

Zhilong SONG | Chemistry | Best Researcher Award

Prof.Zhilong SONG | Chemistry | Best Researcher Award

PhD at Jiangsu University, China

Dr. Zhilong Song, a distinguished researcher in the field of semiconductor sensitive materials and sensing technology, earned his PhD from Huazhong University of Science and Technology in 2017. Following postdoctoral research at Hong Kong University of Science and Technology, he joined the Institute of Energy Research at Jiangsu University in December 2022. Dr. Song, a project leader and recipient of the National Encouragement Scholarship, has pioneered advancements in gas sensor integration, packaging, and hydrogen energy safety monitoring. His prolific contributions include over 30 SCI papers published in top-tier journals, earning more than 2000 citations and an impressive H-Index of 25. 🎓🔬🏆

Publication Top Notes :

Scopus

Google Scholar

Honors/Awards :

Dr. Zhilong Song is a distinguished scholar, adorned with prestigious honors and awards. His academic journey includes the National Encouragement Scholarship, recognizing his outstanding contributions. Further, he secured the National Scholarship for Graduate Students, showcasing his excellence in advanced studies. Dr. Song’s intellectual prowess is evident in being honored for his Excellent Master’s Thesis at both Jiangsu University and Jiangsu Province. These accolades reflect his commitment to scholarly excellence and innovation. 🏆🎓 His research prowess extends beyond publications, as he continues to garner recognition for his impactful contributions to the academic landscape.

Research Focus :

Dr. Zhilong Song is a distinguished researcher whose primary research focus lies in the development and application of advanced materials for gas sensing and environmental monitoring. 🌐 His work spans the synthesis of semiconductor materials, including quantum wires and quantum dots, and their integration into gas sensors with applications ranging from hydrogen sulfide (H2S) detection to smart gas sensor arrays. 🛰️ Dr. Song’s expertise extends to the design of molecularly imprinted polymers for selective and sensitive optosensing. His innovative contributions have significantly advanced the fields of materials chemistry and sensing technology, paving the way for safer hydrogen energy monitoring and efficient pollutant detection. 🌟

Publication Top Notes :

  1. Adsorption behavior of metal–organic frameworks for methylene blue from aqueous solution – Cited 413 times (2014) 📘
  2. Sensitive Room-Temperature H2S Gas Sensors Employing SnO2 Quantum Wire/Reduced Graphene Oxide Nanocomposites – Cited 390 times (2016) 🌡️
  3. Preparation of ion-imprinted mesoporous silica SBA-15 functionalized with triglycine for selective adsorption of Co (II) – Cited 100 times (2013) 🧪
  4. Reversible Formation of g‐C3N4 3D Hydrogels through Ionic Liquid Activation: Gelation Behavior and Room‐Temperature Gas‐Sensing Properties – Cited 94 times (2017) 🌐
  5. Sensitive H2S gas sensors employing colloidal zinc oxide quantum dots – Cited 84 times (2017) ⚗️
  6. Solution-Processed Gas Sensors Employing SnO2 Quantum Dot/MWCNTNanocomposites – Cited 83 times (2016) 🔄
  7. Enhanced photocatalytic activity of ternary Ag3PO4/GO/g-C3N4 photocatalysts for Rhodamine B degradation under visible light radiation – Cited 79 times (2019) 🌈
  8. Wireless self-powered high-performance integrated nanostructured-gas-sensor network for future smart homes – Cited 76 times (2021) 🏠
  9. Fully stretchable and humidity-resistant quantum dot gas sensors – Cited 69 times (2018) 🌧️
  10. Smart gas sensor arrays powered by artificial intelligence – Cited 61 times (2019) 🧠
  11. Molecular imprinting in fluorescent particle stabilized pickering emulsion for selective and sensitive optosensing of λ-cyhalothrin – Cited 56 times (2013) 🌐
  12. Near room temperature operable H2S sensors based on In2O3 colloidal quantum dots– Cited 53 times (2019) 🌡️