Assoc. Prof. Dr. Jinlong He | Molecular Mechanics | Best Researcher Award

Assoc. Prof. Dr. Jinlong He | Molecular Mechanics | Best Researcher Award

Assoc. Prof. Dr. Jinlong He, Sichuan University, China

Dr. Jinlong He is an Associate Professor at Sichuan University’s College of Architecture and Environment and a leading researcher at the Failure Mechanics and Engineering Disaster Prevention Key Laboratory. He earned his Ph.D. in Mechanical and Aerospace Engineering from Utah State University and has held postdoctoral positions at the University of Wisconsin–Madison and the University of Connecticut. His expertise spans membrane-based technologies, multiscale heat transfer, and machine learning-driven materials design. Dr. He has contributed to numerous high-impact research projects funded by NSF, DOE, and other organizations, and his work has been featured in top journals like Science Advances and Journal of Membrane Science.

Publication Profile

Scopus

🎓 Academic Background

Assoc. Prof. Dr. Jinlong He holds a Ph.D. in Mechanical and Aerospace Engineering from Utah State University, which he completed in December 2020. Prior to this, he earned a Master’s degree in Civil Engineering from Southwest Jiaotong University in June 2012. Dr. He began his academic journey with a Bachelor’s degree in Civil Engineering from the same institution, graduating in June 2009. His extensive academic foundation spans diverse engineering disciplines, equipping him with multidisciplinary expertise for research and innovation in his field. 🌟📚

 

 

💼 Professional Experience

Assoc. Prof. Dr. Jinlong He is currently an Associate Professor at Sichuan University, China (2024–Present), in the College of Architecture and Environment. He served as a Postdoctoral Research Associate at the University of Wisconsin–Madison (2022–2024) and the University of Connecticut (2021–2022), specializing in Mechanical Engineering. As a Visiting Scholar at Temple University (2019–2020), Dr. He advanced his expertise in Mechanical Engineering. He also contributed as a Research Assistant (2018–2020) and Teaching Assistant (2017) at Utah State University. Earlier, he worked as a Research Assistant (2012–2016) at Southwest Jiaotong University’s Department of Bridge and Tunnel Engineering. 🌍🔧📚

 

 

🔬 Research Fields

Dr. Jinlong He’s research spans cutting-edge areas of engineering and materials science. His expertise includes membrane-based technologies for mass transport (water, ions, solvents, and gases) and energy efficiency. He investigates multiscale heat transport in energy conversion systems and explores heat and mass transfer across material interfaces. Leveraging machine learning, he simulates and designs multiscale structures and materials. His work also involves multiphysics-multiscale modeling of materials and structures. Additionally, Dr. He studies the mechanical behavior of materials in extreme environments, including corrosion, alkalinity, salinity, radiation, high temperatures, pressure, and oxidation. 🌍🔬⚙️💡

 

 

🔍 Research Interests

Dr. Jinlong He’s research interests encompass a diverse range of advanced materials and technologies. He focuses on membranes, multifunctional metamaterials, high-performance concrete, and colloids and interfaces. His expertise extends to hydrogen storage materials, fracture mechanics, material damage, and self-assembly. He studies liquid crystal phase transitions, shape memory materials, and metal-organic frameworks. Additionally, his work involves advanced composite materials, biomaterials, biomimetic design, two-dimensional layered materials, and carbon sequestration. Dr. He is also engaged in energy storage materials and phase-field simulations, contributing to innovative developments in energy and materials science. 🧪🔋🌿⚙️📐

 

📚 Teaching Interests

Dr. Jinlong He is passionate about teaching a variety of mechanics and simulation disciplines. His teaching interests include materials mechanics, structural mechanics, and computational mechanics, where he explores the behavior and performance of materials and structures under different conditions. He also delves into elasticity mechanics, molecular dynamics, and multiscale simulation, bridging theoretical principles with practical applications. Dr. He’s approach aims to equip students with the skills to analyze and innovate in fields such as material science, engineering, and advanced simulation technologies. 📖⚙️📐🧮

 

 

🏆 Honors and Awards

Dr. Jinlong He has received numerous accolades for his academic excellence and contributions. He earned multiple First-Class Academic Scholarships and National Scholarships during his undergraduate and postgraduate studies at Southwest Jiaotong University. His achievements include awards like the Excellent Graduation Design Award (2009) and the Excellent Graduate Student Award (2009). Dr. He also excelled in mathematical modeling, winning prizes in national and university-level contests. These honors reflect his dedication, talent, and outstanding performance in academics and research, establishing him as a distinguished scholar in his field. 🎓✨📜

 

 

🔬 Research Focus

Assoc. Prof. Dr. Jinlong He’s research spans advanced membrane technologies and materials science. His work focuses on enhancing water transport, boron removal, and energy efficiency in polyamide membranes. He explores multiscale mechanisms like heat and mass transfer, solvent flow in nanofiltration, and void formation in polymer films. Dr. He also investigates the mechanical properties of nanoporous materials, chlorine resistance of membranes, and molecular simulations of organic solvent transport. His interdisciplinary approach integrates computational modeling and material innovations for applications in desalination, energy storage, and environmental sustainability. 🌊💧🧪📚

 

 

Publication Top Notes

  • Molecular insights into the mechanism of polymer chain strategy enhancing boron separation efficiency in polyamide membranesSeparation and Purification Technology (2025) 🌟 [Cited by: 0]
  • High-efficiency water transport and boron removal in polyamide membranes enabled by surface-grafted self-assembled monolayer molecular brushesJournal of Membrane Science (2025) 🌊 [Cited by: 0]
  • Universal Carbonizable Filaments for 3D PrintingAdvanced Functional Materials (2024) 🖨️ [Cited by: 0]
  • Nanoporous amorphous carbon nanopillars with lightweight, ultrahigh strength, large fracture strain, and high damping capabilityNature Communications (2024) 🏗️ [Cited by: 3]
  • Salt partitioning and transport in polyamide reverse osmosis membranes at ultrahigh pressuresJournal of Membrane Science Letters (2024) 🌍 [Cited by: 0]
  • Beyond nothingness in the formation and functional relevance of voids in polymer filmsNature Communications (2024) 🔬 [Cited by: 4]
  • Molecular simulations of organic solvent transport in dense polymer membranes: Solution-diffusion or pore-flow mechanism?Journal of Membrane Science (2024) 🌡️ [Cited by: 4]
  • Polyamide reverse osmosis membrane compaction and relaxation: Mechanisms and implications for desalination performanceJournal of Membrane Science (2024) 💧 [Cited by: 10]
  • The physical basis for solvent flow in organic solvent nanofiltrationScience Advances (2024) 🧪 [Cited by: 7]
  • Insights on the chlorine resistance of polyester composite nanofiltration membranesJournal of Membrane Science (2024) 🧼 [Cited by: 8]

Conclusion

Assoc. Prof. Dr. Jinlong He’s exceptional academic qualifications, groundbreaking research, and significant professional achievements clearly position him as an ideal candidate for the Best Researcher Award. His contributions to fields such as membrane technologies, multifunctional metamaterials, and energy efficiency are not only innovative but also have a profound impact on scientific and engineering advancements. His leadership in interdisciplinary research projects and his consistent recognition from prestigious institutions underscore his outstanding capabilities. Dr. He’s continuous dedication to advancing material science and engineering makes him a deserving recipient of this prestigious award. 🏆

 

 

 

Sumita Roy | Biophysical Chemistry | Best Researcher Award

Dr. Sumita Roy | Biophysical Chemistry | Best Researcher Award

Dr. Sumita Roy, Vidyasagar University, India

Dr. Sumita Roy is a Professor in the Department of Chemistry at Vidyasagar University, West Bengal, India. She holds a Ph.D. in Biophysical Chemistry from IIT Kharagpur, where she worked under Prof. Joykrishna Dey. Her research focuses on designing and synthesizing functional amphiphiles to form supramolecular self-assemblies like gels, vesicles, and metal nanoparticles, with applications in various scientific fields, including biomedicine. Dr. Roy has published extensively, with over 30 research papers in high-impact journals. She has received numerous accolades, including the GATE, UGC/CSIR-NET, and SLET qualifications. 🌟🔬📚

 

Publication Profile

Google Scholar

Education

Dr. Sumita Roy completed her B.Sc. in Chemistry (Hons) in 1998 and M.Sc. in Physical Chemistry (Specialization) in 2000, both from Vidyasagar University, West Bengal, India. She pursued her Ph.D. in Biophysical Chemistry at the prestigious Indian Institute of Technology (IIT) Kharagpur, under the guidance of Prof. Joykrishna Dey. Dr. Roy received her Ph.D. in August 2005, focusing on the spontaneous vesicle formation and self-organization of chiral amino acid-derived surfactants and polysoaps in water. Her strong educational foundation has shaped her career in research and academia. 🌟📚🧪

 

Awards and Achievements

Dr. Sumita Roy has earned several prestigious recognitions throughout her academic journey. She qualified for the GATE exam in both 2000 and 2001, showcasing her expertise in chemistry. Additionally, Dr. Roy successfully cleared the UGC/CSIR-NET in 2001 and the SLET exam in the same year, further cementing her academic prowess. In 1995, she was honored with a National prize, highlighting her early accomplishments in the field. These accolades reflect her dedication and exceptional skills in chemistry, contributing to her successful academic and research career. 🌟📜🎓

 

Research Interests

Dr. Sumita Roy’s research focuses on the design and synthesis of specialized functional amphiphiles that form supramolecular self-assemblies, such as gels, vesicles, and metal nanoparticles. These self-assemblies are crucial in various scientific fields, spanning from surfactant chemistry to biomedicinal applications. Dr. Roy’s work explores how these structures can be employed in versatile domains, contributing to innovations in material science and biomedical technologies. Her research aims to unlock new possibilities for sustainable solutions in both industrial and healthcare applications. 🧪💡🔬💊

 

Publication Top Notes  

  • Spontaneously Formed Vesicles of Sodium N-(11-Acrylamidoundecanoyl)-glycinate and l-Alaninate in Water – S Roy, J Dey, Langmuir 21 (23), 10362-10369 (Cited by 81) 📚 (2005)
  • Microviscosity of Bilayer Membranes of Some N-acylamino Acid Surfactants – S Roy, A Mohanty, J Dey, Chemical Physics Letters 414 (1-3), 23-27 (Cited by 81) 🔬 (2005)
  • Effect of Hydrogen-Bonding Interactions on Self-Assembly of Sodium N-(11-acrylamidoundecanoyl)-l-serinate – S Roy, J Dey, Journal of Colloid and Interface Science 307 (1), 229-234 (Cited by 51) 🧪 (2007)
  • Cationic Vesicles as Chiral Selector for Enantioseparations of Nonsteroidal Anti-Inflammatory Drugs – J Dey, A Mohanty, S Roy, D Khatua, Journal of Chromatography A 1048 (1), 127-132 (Cited by 51) 🧑‍🔬 (2004)
  • Self-Organization and Microstructures of Sodium 11-Acrylamidoundecanoate in Water – S Roy, J Dey, Langmuir 19 (23), 9625-9629 (Cited by 49) 🌊 (2003)
  • Synthesis and Characterization of Biogenic Metal Nanoparticles and its Cytotoxicity – P Maity, M Bepari, A Pradhan, R Baral, S Roy, SM Choudhury, Colloids and Surfaces B: Biointerfaces 161, 111-120 (Cited by 38) 🏅 (2018)
  • Characterization of Polymeric Vesicles of Poly (Sodium 11-Acrylamidoundecanoate) in Water – RR Nayak, S Roy, J Dey, Colloid and Polymer Science 285, 219-224 (Cited by 38) 🔬 (2006)
  • Giant Vesicles of a Single-Tailed Chiral Cationic Surfactant in Water – S Roy, D Khatua, J Dey, Journal of Colloid and Interface Science 292 (1), 255-264 (Cited by 35) 🌟 (2005)
  • Small Colony Variants of Staphylococcus aureus in Infective Endocarditis – S Bhattacharyya, S Roy, PK Mukhopadhyay, K Rit, JB Dey, U Ganguly, Iranian Journal of Microbiology 4 (2), 98 (Cited by 32) 🦠 (2012)
  • Spontaneous Formation of Vesicles by Sodium 2-Dodecylnicotinate in Water – A Roy, M Maiti, S Roy, Langmuir 28 (35), 12696-12703 (Cited by 31) 🌊 (2012)

 

Marina Piscopo | Molecular Biology | Best Researcher Award

Prof. Marina Piscopo | Molecular Biology | Best Researcher Award

Prof. Marina Piscopo, University of Naples Federico II, Italy

Prof. Marina Piscopo appears to be a strong candidate for the “Best Researcher Award” based on her extensive background and contributions to the field.

Publication profile

Educational Background and Professional Experience

  • Education: Prof. Piscopo’s academic qualifications are impressive. She holds a Degree in Biological Sciences with honors and a Ph.D. in Biochemical Sciences from the University of Naples Federico II. Her research during these periods has laid a solid foundation for her current work.
  • Professional Experience: With over two decades of experience as a University Researcher and Associate Professor in Molecular Biology, she has demonstrated a long-term commitment to scientific research and education. Her roles include significant positions such as Vice-President and Councillor of The Order of Biologists Campania Molise.

Research Contributions

  • Scientific Focus: Prof. Piscopo’s research is centered on the structural and functional aspects of histone and protamine proteins, their interactions with DNA, and their use as biomarkers for assessing environmental pollutants’ effects on reproductive health. This interdisciplinary approach bridges molecular biology with environmental science, addressing both fundamental and applied research questions.
  • Innovative Work: Her work includes developing rapid and efficient genotoxicity tests and exploring natural bioactive molecules with potential health benefits. Notably, her research on the impact of heavy metals on marine and human reproductive health is pioneering and highly relevant.
  • Publications and Impact: Prof. Piscopo has published numerous significant papers in reputable journals, reflecting the high quality and impact of her research. Her recent publications on the effects of chromium on reproductive health and environmental pollutants highlight her active engagement with current issues.

Engagement and Recognition

  • Conferences and Speaking Engagements: Prof. Piscopo has been invited to speak at several prestigious conferences, indicating her recognition and influence in the field. Her contributions to conferences such as the Ecofoodfertility Project and discussions on the impact of environmental pollutants further illustrate her role as a thought leader.

Publication Top Notes

  • Polychlorinated biphenyls (PCBs) in the environment: occupational and exposure events, effects on human health and fertility
    Toxics 10 (7), 365 – 102 citations, 2022 🧪
  • Discovery of the involvement in DNA oxidative damage of human sperm nuclear basic proteins of healthy young men living in polluted areas
    International Journal of Molecular Sciences 21 (12), 4198 – 74 citations, 2020 🔬
  • Salicylic acid and melatonin alleviate the effects of heat stress on essential oil composition and antioxidant enzyme activity in Mentha× piperita and Mentha arvensis L.
    Antioxidants 8 (11), 547 – 62 citations, 2019 🌿
  • Molecular alterations in spermatozoa of a family case living in the land of fires—a first look at possible transgenerational effects of pollutants
    International Journal of Molecular Sciences 21 (18), 6710 – 58 citations, 2020 🔄
  • Functional and structural biomarkers to monitor heavy metal pollution of one of the most contaminated freshwater sites in Southern Europe
    Ecotoxicology and Environmental Safety 163, 665-673 – 51 citations, 2018 🌍
  • Molecular effects of copper on the reproductive system of Mytilus galloprovincialis
    Molecular Reproduction and Development 86 (10), 1357-1368 – 49 citations, 2019 🦪
  • Defensome against toxic diatom aldehydes in the sea urchin Paracentrotus lividus
    PLoS One 7 (2), e31750 – 49 citations, 2012 🦠
  • H3K4 histone methylation in oral squamous cell carcinoma
    Acta Biochimica Polonica 56 (3), 405-410 – 47 citations, 2009 🧬
  • Phenol-Rich Feijoa sellowiana (Pineapple Guava) Extracts Protect Human Red Blood Cells from Mercury-Induced Cellular Toxicity
    Antioxidants 8 (7), 220 – 44 citations, 2019 🍇
  • Mytilus galloprovincialis (Lamarck, 1819) spermatozoa: hsp70 expression and protamine-like protein property studies
    Environmental Science and Pollution Research 25, 12957-12966 – 44 citations, 2018 🌊
  • Antimicrobial activity of various cationic molecules on foodborne pathogens
    World Journal of Microbiology and Biotechnology 23, 1679-1683 – 44 citations, 2007 🦠
  • Protamine-like proteins analyses as emerging biotechnique for cadmium impact assessment on male mollusk Mytilus galloprovincialis (Lamarck 1819)
    Acta Biochimica Polonica 65 (2), 259-267 – 43 citations, 2018 🧫
  • High efficiency method to obtain supercoiled DNA with a commercial plasmid purification kit
    Acta Biochimica Polonica 59 (2), 275-278 – 43 citations, 2012 🧬
  • Could SARS-CoV-2 have bacteriophage behavior or induce the activity of other bacteriophages?
    Vaccines 10 (5), 708 – 42 citations, 2022 🦠
  • SARS-CoV-2 detection in fecal sample from a patient with typical findings of COVID-19 pneumonia on CT but negative to multiple SARS-CoV-2 RT-PCR tests on oropharyngeal and …
    Medicina 57 (3), 290 – 42 citations, 2021 🦠

Conclusion

Prof. Marina Piscopo’s extensive educational background, impactful research, and active involvement in the scientific community make her a suitable candidate for the “Best Researcher Award.” Her work addresses critical issues in molecular biology and environmental science, demonstrating both depth and breadth in her field.

 

Danyu Xia | Supramolecular Chemistry Award | Best Researcher Award

Assoc Prof Dr. Danyu Xia | Supramolecular Chemistry Award | Best Researcher Award

Assoc Prof Dr. Danyu Xia, Shanxi University, China

Dr. Danyu Xia, Associate Professor at Shanxi University, specializes in supramolecular chemistry with a focus on self-assembling materials. With a PhD from Zhejiang University and international research experience from UNSW, his work spans responsive polymers, macrocycles, and liquid crystals. Dr. Xia has authored numerous publications and presented widely, including at prestigious conferences like ISMSC. His recent research explores novel applications of pillararenes in polymer networks and drug delivery systems. 🧪 Passionate about advancing molecular sciences, he continues to mentor students and collaborate on cutting-edge research in China.

 

Publication profile

Scopus

Education and Academic Background

Danyu Xia completed her PhD in Chemistry from Zhejiang University, China, under the supervision of Prof. Feihe Huang. Her doctoral research focused on responsive self-assemblies based on macrocycles, with a particular interest in their applications in various fields.

Professional Experience

Currently serving as an Associate Professor at Shanxi University, Danyu Xia supervises multiple students at different academic levels. Her research spans the realm of supramolecular self-assembly, supramolecular polymeric materials, and macrocycle-based host-guest interactions.

Research Focus

Danyu Xia’s research focuses on the development and application of supramolecular polymeric materials, particularly using pillararene-based architectures. Her work explores the synthesis and characterization of these materials, emphasizing their ability to form intricate networks through host-guest interactions. These supramolecular polymers exhibit promising applications, including efficient removal of dyes from water systems, highlighting their potential in environmental remediation. Xia’s investigations contribute significantly to the field of supramolecular chemistry, advancing our understanding of how macrocycle-based structures can be tailored for practical uses in water purification and other technological applications. 🌍

 

Publication Top Notes