Zhenping Liu | Electrochemistry | Best Researcher Award

Best Researcher Award

Zhenping Liu — South China Normal University

Zhenping Liu
Affiliation South China Normal University
Country China
Scopus ID 57323236300
Documents 47
Citations 1,678
h-index 24
Subject Area Electrochemical (Bio-)sensors
Event International Chemical Scientist Awards
ORCID 0000-0002-4509-0201

Zhenping Liu is a researcher at South China Normal University whose work centers on analytical chemistry, electrochemical (bio-)sensing, and photoelectrochemical sensing. His research addresses sensor design, interfacial regulation, and analytical detection, with applications spanning biomedical analysis and chemical measurement. These activities place his work within contemporary electroanalytical research systems today. [1]

Abstract

Zhenping Liu is associated with research in analytical chemistry, electrochemical (bio-)sensing, and photoelectrochemical sensing at South China Normal University. His research activities include electrochemical biosensor development, signal amplification, nanomaterial-enabled interfaces, and analytical platforms for chemical and biological targets. The supplied bibliometric profile records 47 documents, 1,678 citations, and an h-index of 24. [1] [2]

Keywords

  • Electrochemical sensing
  • Electrochemical biosensors
  • Analytical chemistry
  • Photoelectrochemical sensing
  • Aptasensors
  • Nanocomposite materials
  • Biomarker detection

 Introduction

Zhenping Liu is a researcher at South China Normal University whose work centers on analytical chemistry, electrochemical (bio-)sensing, and photoelectrochemical sensing. His research addresses sensor design, interfacial regulation, and analytical detection, with applications spanning biomedical analysis and chemical measurement. These activities place his work within contemporary electroanalytical research systems today. [1]

Research Profile

Liu’s research profile combines analytical chemistry with electrochemical and photoelectrochemical sensing. Institutional information identifies his affiliation with South China Normal University and research interests involving electrochemical biosensors, multi-target detection, and interfacial regulation. His reported scholarly record includes peer-reviewed SCI-indexed publications and sustained contributions to sensor-oriented analytical research internationally and collaboratively. [1]

 Research Contributions

Liu’s contributions include electrochemical biosensor arrays, aptasensors, nanocomposite-based sensing interfaces, and integrated analytical platforms. His collaborative studies have addressed biomarkers such as C-reactive protein and carbohydrate antigen 125, emphasizing signal amplification, sensitivity, selectivity, and practical sample analysis. These approaches illustrate the integration of materials engineering with electroanalytical methodology in practice. [3] [4]

Publications

Liu has contributed to peer-reviewed publications in journals including Biosensors and Bioelectronics, Talanta, Sensors and Actuators B: Chemical, and analytical science venues. Representative studies report electrochemical biosensor arrays, aptasensor platforms, and sensor systems for pharmaceutical or biomedical targets. Records provide DOI identifiers for several publications involving Liu as a coauthor. [3] [4] [5]

Research Impact

The reported impact of Liu’s research is reflected in bibliographic indicators and continued publication activity in electrochemical sensing. His studies address analytical challenges relevant to biomarker detection, pharmaceutical analysis, and sensitive chemical measurement. Citation records supplied for this profile indicate 1,678 citations and an h-index of 24, indicating scholarly influence. [2]

 Award Suitability

The Best Researcher Award is aligned with Liu’s documented research profile because his work addresses established themes in analytical chemistry and electrochemical (bio-)sensing. His publication activity, citation indicators, and contributions to sensor development provide relevant evidence for scholarly assessment. Award decisions should follow independent verification of records and eligibility requirements. [1] [2]

Conclusion

Zhenping Liu’s research profile demonstrates engagement with electrochemical sensing and analytical chemistry at South China Normal University. His publications and collaborative studies contribute to sensor platforms for chemical and biological analysis. The supplied bibliometric indicators document research visibility, while independent source verification remains appropriate when evaluating recognition, authorship, and eligibility. [1] [2]

References

  1. South China Normal University. (n.d.). Zhenping Liu: Curriculum Vitae and research interests. South China Academy of Advanced Optoelectronics.
    https://aoe.scnu.edu.cn/a/20220314/2211.html
  2. Elsevier. (n.d.). Scopus author details: Zhenping Liu, Author ID 57323236300. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57323236300
  3. Liu, Z., et al. (2024). Multiplex signal amplification for ultrasensitive CRP assay via integrated electrochemical biosensor array using MOF-derived carbon material and aptamers. Talanta, 272, 125735.
    DOI: https://doi.org/10.1016/j.talanta.2024.125735
  4. Huang, S., Liu, Z., et al. (2022). Triple signal-enhancing electrochemical aptasensor based on rhomboid dodecahedra carbonized-ZIF67 for ultrasensitive CRP detection. Biosensors and Bioelectronics, 207, 114129.
    DOI: https://doi.org/10.1016/j.bios.2022.114129
  5. He, J., et al. (2026). Precisely engineered honeycomb-like C-ZIF67 aptasensor array for integrated detection of multiple cardiac biomarkers in AMI diagnosis. Biosensors and Bioelectronics, 293, 118167.
    DOI: https://doi.org/10.1016/j.bios.2025.118167
  6. ORCID. (n.d.). Zhenping Liu, ORCID 0000-0002-4509-0201.
    https://orcid.org/0000-0002-4509-0201
  7. International Chemical Scientist Awards. (n.d.). International Chemical Scientist Awards.
    https://chemicalscientists.com/

Ravi Patel | Electrochemistry | Research Excellence Award

Mr. Ravi Patel | Electrochemistry | Research Excellence Award

Research Fellow | Indian Institute of Technology Roorkee | India

Mr. Ravi Patel is a materials science researcher specializing in the mechanical behavior and microstructural characterization of advanced metallic alloys, with particular emphasis on aluminum–rare earth systems. His research integrates hardness testing, quantitative microstructural analysis, and structure–property correlations to address performance and durability challenges in engineering materials. He has authored 4 Documents publications, which have received 7 citations, and currently holds a Scopus h-index of 1, indicating emerging scholarly impact. His work published in the Journal of Materials Engineering and Performance demonstrates strong analytical rigor and relevance to industrial materials design. Through collaborations with co-authors across interdisciplinary domains, his research contributes to improving alloy reliability and supports sustainable materials development for structural and technological applications worldwide.

Citation Metrics (scopus)

8
6
4
2

0

Citations
7

Documents
4

h-index
1

Citations

Documents

h-index

View Google Scholar Profile      View Scopus Profile

Featured Publications

xianli song | Electrochemistry | Best Researcher Award

Dr. xianli song | Electrochemistry | Best Researcher Award

Anhui polytechnic university , China.

Dr. Xianli Song 🎓 is a dedicated researcher in applied chemistry, currently serving at Anhui Polytechnic University in China 🏫. With a Ph.D. in Applied Chemistry from the University of Chinese Academy of Sciences 🧪, she focuses on advanced battery materials and electrochemical systems 🔋. Dr. Song has published extensively in high-impact journals and actively contributes to academic conferences 🌍. She brings a wealth of lab expertise and technical skillsets 🧫, making significant strides in materials science and sustainable energy solutions 🌱. Her academic excellence has been recognized with multiple awards 🏅 throughout her career.

PROFILE 

SCOPUS

ORCID 

 

🔍 Summary of Suitability:

Dr. Xianli Song is a promising early-career researcher with a Ph.D. in Applied Chemistry and a growing track record of high-impact scientific contributions 🔬. Her work centers around lithium-ion batteries, solid-state electrolytes, and advanced electrochemical systems—areas that are crucial for clean energy technologies ⚡. Her diverse research experience is evidenced by multiple publications in prestigious international journals such as Advanced Functional Materials, Solid State Ionics, and Electrochimica Acta 📚.

🔹 Education & Experience 

  • 🎓 Ph.D. in Applied Chemistry – University of Chinese Academy of Sciences, Beijing (2017–2021)

  • 🎓 M.E. in Chemistry – University of Xinjiang, Urumqi (2013–2016)

  • 🎓 B.E. in Chemical Engineering and Technology – Taishan Medical College (2008–2012)

  • 👩‍🏫 Teaching & Research – School of Chemical and Environmental Engineering, Anhui Polytechnic University

  • 🧪 Research Experience – Expertise in lithium batteries, solid-state electrolytes, nanofibers, and supercapacitors

Professional Development 🚀📖

Dr. Song continually hones her scientific expertise through active participation in conferences, like presenting a poster at the 8th International Congress on Ionic Liquids (COIL-8) in Beijing 🧑‍🔬. Her development is also shaped by hands-on laboratory practice using advanced instruments like XRD, SEM, TEM 🔬, and electrochemical workstations ⚙️. She is proficient in essential software for scientific analysis and documentation 💻. Fluent in English (CET-6) 🌐, she bridges global scientific discourse effectively. Dr. Song’s commitment to professional growth supports her evolving research in high-performance, sustainable energy storage technologies ⚡.

Research Focus 🔍🤖

Dr. Xianli Song’s research 🔍 primarily centers on energy storage and electrochemical materials, with a particular focus on solid-state lithium metal batteries 🔋. Her work involves developing advanced polymer electrolytes, ionogel-ceramic hybrids, and nanofiber membranes for safer, high-performance batteries 🧫. She also explores materials for supercapacitors and transparent conductive films, contributing to green energy technologies 🌿. Her interdisciplinary approach blends materials science, nanotechnology, and applied chemistry 🧪, making her contributions vital for the next generation of renewable energy storage solutions 🔄. Her studies are published in top-tier journals, underscoring the impact of her work 📚.

Awards and Honors 🏆🎖️

  • 🏅 2020 Merit Student Award – University of Chinese Academy of Sciences

  • 🥇 2016 Excellent Graduate Dissertation – Xinjiang University

  • 🎖 2011 Outstanding Student – Taishan Medical College

Publications & Citations 📚

  • 📄 Construction organic composite gel polymer electrolyte for stable solid-state lithium metal batteriesSolid State Ionics, 2025 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Influence of Si content on infrared and electrical properties of metal-free transparent conductive Si-doped DLC filmDiamond & Related Materials, 2025 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Synergistic coupling in “Ionogel-in-Ceramic” solid electrolyte for lithium batteriesAdvanced Functional Materials, 2021 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Li ion distribution in poly(ionic liquid) electrolyte with LATP nanoparticlesElectrochimica Acta, 2021 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Core@shell nanofiber membrane for lithium-metal batteriesSolid State Ionics, 2020 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Ionic liquids as high-voltage electrolytes for supercapacitorsFrontiers in Chemistry, 2020 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Polyaniline-coal based carbon nanofibers for flexible supercapacitorsElectrochimica Acta, 2016 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 CdS on coal-based activated carbon nanofibers with photocatalytic propertyChemical Physics Letters, 2016 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Coal-derived porous carbon fibers for electrodes and absorptionJ. Mater. Chem. A, 2015 📅 | 🔍 Cited by: [citation count needed] 📈

  • 📄 Photochromism of pyrazolone derivatives in solid stateNew J. Chem., 2015 📅 | 🔍 Cited by: [citation count needed] 📈

Conclusion

Dr. Song exemplifies what the Best Researcher Award seeks to recognize: innovative, impactful, and relevant scientific work that advances both academia and real-world applications. Her focus on sustainable energy solutions, publication record, and technical expertise make her a strong and deserving candidate for this prestigious honor. 🏅

 

 

Dr. Aurelien Francis Kamga ngounoue | Electrochemistry | Best Researcher Award

Dr. Aurelien Francis Kamga ngounoue | Electrochemistry | Best Researcher Award

Dr. Aurelien Francis Kamga ngounoue, University of Yaounde, Cameroon

🧪 Dr. Francis Aurelien Ngounoue Kamga is a Cameroonian researcher specializing in organic and inorganic synthetic chemistry, with a focus on coordination chemistry. He earned his Ph.D. in Coordination Chemistry from the University of Yaoundé I in 2022, studying metal complexes with Schiff bases under Professor Peter Teke Ndifon. Dr. Ngounoue Kamga has held prestigious fellowships, including the “Petrache Poenaru” Postdoctoral Scholarship and the “Eugen Ionescu” Doctoral Scholarship at the National University of Science and Technology POLITEHNICA Bucharest. His expertise includes electrochemistry, organometallic chemistry, and computational chemistry, with several high-impact publications.

Professional Profile:

Scopus

Suitability for Best Researcher Award

Dr. Francis Aurelien Ngounoue Kamga is a highly suitable candidate for a Best Researcher Award due to his outstanding contributions to the field of coordination chemistry and his multidisciplinary expertise in electrochemistry, organometallic chemistry, and computational chemistry. His research on metal complexes with Schiff bases and their biological and electrochemical properties demonstrates a strong impact on both fundamental and applied chemistry, making him a compelling contender for the award.

🎓 Education and Experience

  • Ph.D. in Coordination Chemistry (2022) – University of Yaoundé I, Cameroon
  • “Petrache Poenaru” Postdoctoral Scholarship (2023–2024) – POLITEHNICA Bucharest, Romania 🇷🇴
  • “Eugen Ionescu” Doctoral Scholarship (2021–2022) – POLITEHNICA Bucharest, Romania
  • Part-time Lecturer & Laboratory Technician – University of Yaoundé I, Cameroon 🇨🇲
  • Research Assistant – Institute of Medical Research and Medicinal Plants (IMPM)
  • Intern – UCB Cameroon

🚀 Professional Development

Dr. Ngounoue Kamga’s research spans electrochemistry, coordination chemistry, and computational chemistry. He has contributed to the electrochemical and spectroscopic study of metal complexes, presenting his work at major scientific events like the 70th Annual Meeting of the International Society of Electrochemistry and the IEEE 2nd Scientific Research Symposium in Bucharest. His research at the Laboratory of Electrochemical Processes in Organic Solvents under Professor Eleonora-Mihaela Ungureanu advanced understanding of nickel(II) complexes with Schiff bases. Proficient in French and English, he excels in analytical techniques such as IR, NMR, UV-Vis, and XRD and molecular modeling. 🌍🔬

🔎 Research Focus

Dr. Ngounoue Kamga’s research focuses on coordination chemistry and the synthesis and characterization of metal complexes with biological and electrochemical properties. His work on Schiff base complexes with metals like V(IV), Co(II), Ni(II), and Cu(II) explores their structural, spectroscopic, and biological activities. He integrates electrochemical methods with computational chemistry to understand reaction mechanisms and material properties. His research advances applications in catalysis, sensor development, and biological activity. His computational work provides insights into reaction pathways and complex stability. 🔬⚗️💡

🏆 Awards and Honors

  • 🏅 “Petrache Poenaru” Postdoctoral Scholarship – POLITEHNICA Bucharest, Romania (2023–2024)
  • 🏅 “Eugen Ionescu” Doctoral Scholarship – POLITEHNICA Bucharest, Romania (2021–2022)
  • 🎤 Presented at 70th Annual Meeting of the International Society of Electrochemistry (2023)
  • 🎤 Presented at IEEE 2nd Scientific Research Symposium – Bucharest (2023)
  • 🏅 Published in Molecules and U.P.B. Scientific Bulletin – High-impact journals

Publication Top Notes:

1️⃣ Experiments and Calculation on New N,N-bis-Tetrahydroacridines (2024) – Molecules, 29, 4082 📖 🔬
🔗 [DOI: 10.3390/molecules29174082]

2️⃣ Electrochemical and Optical Investigation and DFT Calculation on two Tetrahydroacridines (2024) – U.P.B. Sci. Bull., Series B, Vol 86, Iss 2 🧪💡

3️⃣ Electrochemical Investigation on 1,2,3,4-tetrahydroacridine-9-carboxamide in Different Organic Solvents (2024) – U.P.B. Sci. Bull., Series B, Vol 86, Iss 1 ⚗️📊

4️⃣ Ni(II)-Salophen—Comprehensive Analysis on Electrochemical and Spectral Characterization and Biological Studies (2023) – Molecules, 28, 5464 ⚛️🦠
🔗 [DOI: 10.3390/molecules28145464]

5️⃣ Cobalt (II), Nickel (II) and Copper (II) complexes of Tetradentate Schiff base ligands derived from 4-Nitro-O-phenylenediamine (2022) – Egypt. J. Chem. 65(9), 477-495 ⚙️🔬
🔗 [DOI: 10.21608/EJCHEM.2022.82313.4087]

6️⃣ Synthesis, Characterization and Biological Activities of Binuclear Metal Complexes of 2-Benzoylpyridine and Phenyl(Pyridin-2-yl)Methanediol (2021) – Open J. Inorg. Chem., 11, 20-42 🏗️🧫
🔗 [DOI: 10.4236/ojic.2021.111002]

7️⃣ Antimicrobial and antioxidant studies on some transition metal complexes derived from the Schiff base ligand, 4-hydroxypent-3-en-2-ylideneaminophenol (2015) – Der Pharma Chemica, 7(5), 101-106 🦠🛡️