Zhenyu wang | Experimental Design | Best Research Article Award

Mr. Zhenyu wang | Experimental Design | Best Research Article Award

PhD Student | State Key Laboratory of Chemistry for NBC Hazards Protection | China

Zhenyu Wang is a dedicated PhD student at the State Key Laboratory of Chemistry for NBC Hazards Protection, specializing in radiation measurement, detector design, and cosmic ray muon imaging. His research contributions include the development of a spatio-temporal Poisson Kriging algorithm for nuclear radiation field reconstruction and the creation of advanced muon imaging detectors. With four publications in reputable SCI-indexed journals and two patents under application, his work bridges theoretical innovation with practical applications in nuclear safety and radiation monitoring. His research demonstrates strong potential for impact in both academic and applied scientific domains, making him a promising candidate for the Best Research Article Award.

Professional Profile 

Education  

Zhenyu Wang is currently pursuing his doctoral studies at the State Key Laboratory of Chemistry for NBC Hazards Protection, where he is engaged in advanced research on radiation detection technologies and radiation field modeling. His academic training has provided a strong foundation in nuclear science, physics, and engineering principles, which he has applied to develop innovative solutions in radiation measurement and imaging. Through his PhD program, he has gained extensive experience in experimental design, simulation modeling, and interdisciplinary collaboration, positioning him as a skilled and forward-thinking researcher in his field.

Professional Experience

Zhenyu Wang has gained valuable professional experience through his ongoing doctoral research at the State Key Laboratory of Chemistry for NBC Hazards Protection. His work focuses on the development and optimization of radiation detectors, including plastic scintillator arrays for muon tomography and gamma detectors enhanced with wavelength-shifting fibers. He has led and contributed to key research projects involving performance simulations, algorithm development, and detector testing. In addition, he has co-authored multiple peer-reviewed articles and contributed to patent applications, demonstrating both scientific rigor and innovation. His professional experience reflects a strong integration of theoretical research and practical application in radiation detection and nuclear safety technologies.

Research Interest

Zhenyu Wang’s research interests lie at the intersection of radiation detection, nuclear safety, and advanced computational modeling. He focuses on developing high-performance radiation detectors, such as plastic scintillator-based muon tomography systems and gamma detectors integrated with wavelength-shifting fibers. A key area of his work involves radiation field reconstruction using novel algorithms, including the spatio-temporal Poisson Kriging method, which captures both spatial and temporal dynamics of radiation fields. He is also deeply interested in cosmic ray muon imaging, leveraging its unique properties for non-invasive detection and security applications. His research aims to advance both the scientific understanding and practical effectiveness of radiation monitoring technologies.

Award and Honor

While currently pursuing his PhD, Zhenyu Wang has already achieved notable recognition through his contributions to high-impact research and innovation. His work has led to the publication of multiple papers in esteemed SCI-indexed journals and the application for two patents, reflecting both academic excellence and inventive capability. His selection for participation in major research projects at the State Key Laboratory of Chemistry for NBC Hazards Protection further highlights his standing as a promising young researcher. Though formal awards and honors are not explicitly listed, his growing publication record, technical innovations, and leadership in cutting-edge research position him as a strong candidate for future academic and professional accolades.

Publications Top Noted

Title: Composition, structure and position resolution optimization of plastic scintillator units and arrays for a muon tomography detector
Year: 2025

Title: Performance simulation of an all-solid-state neutron detector based on stilbene and 6Li glass composite
Year: 2025

Title: Optimized design of gamma detectors based on scintillator and wavelength-shifting fiber for arrayed radiation portal monitors
Year: 2025
Citation: 1 citation

Title: The Influence of Mg Doping in α-Al₂O₃ Crystals Investigated with First-Principles Calculations and Experiment
Year: 2025
Citation: 1 citation

Conclusion

Zhenyu Wang is a strong contender for the Best Research Article Award. His work demonstrates technical depth, innovation, and applied relevance, particularly in nuclear radiation field reconstruction and cosmic muon detection. To maximize the strength of the application, it is recommended

Wanida Wonsawat | Experimental Design | Best Researcher Award

Wanida Wonsawat | Experimental Design | Best Researcher Award

Assist. Prof. Dr Wanida Wonsawat, Suan Sunandha Rajabgat University, Thailand

Assist. Prof. Dr. Wanida Wonsawat 🇹🇭 is a leading scholar in analytical chemistry with a strong dedication to research, innovation, and community development. Her work integrates electroanalytical chemistry, material science, and sensor development to solve real-world problems. 🧪🔬 With an academic journey rooted at Chulalongkorn University and Burapha University, she has produced numerous high-impact publications and patented devices addressing food safety, environmental monitoring, and public health. 🌍🥼 Her research is widely recognized internationally, earning gold and silver medals across global invention expos in Russia 🇷🇺, Japan 🇯🇵, Romania 🇷🇴, and Korea 🇰🇷. Her leadership in developing novel paper-based and electrochemical sensors positions her as a pioneer in accessible diagnostics. 💡📜 As an educator and mentor, she contributes significantly to Thailand’s scientific and academic community. Her outstanding achievements and innovative approach make her a deserving candidate for the Best Researcher Award.

Publication Profile

Google Scholar

Education

Assist. Prof. Dr. Wanida Wonsawat is a dedicated scholar in Analytical Chemistry 🧪📊. She earned her Ph.D. in Analytical Chemistry in 2012 from Chulalongkorn University, Bangkok 🇹🇭, following her M.Sc. in the same field from the same institution in 2006. Her academic journey began with a B.Ed. in Chemistry Teaching from Burapha University, Chon Buri, in 1999 🎓🧑‍🏫. With a strong foundation in both education and scientific research, Dr. Wonsawat combines her passion for teaching and analytical precision, contributing significantly to the academic and scientific community through education and research 🔬📚.

Experience

Assist. Prof. Dr. Wanida Wonsawat has been the recipient of numerous prestigious scholarships and grants throughout her academic journey. She was honored with the 90th Anniversary of Chulalongkorn University (Ratchadaphiseksomphot Endowment Fund) awards in both 2006–2007 and 2011–2012 🎓🏅. She received support from the Asian Development Bank (ADB) in 2007–2008 🌏💰 and benefited from Thailand’s Higher Educational Strategic Scholarships for Frontier Research Network Project between 2007 and 2010 🔬📚. In 2008, she earned the JASSO Scholarship from Japan 🇯🇵🤝. Additionally, she was granted the CU Graduate School Thesis Grant in 2005 for her research excellence 📖🎓.

Research Topics

Assist. Prof. Dr. Wanida Wonsawat specializes in analytical and electroanalytical chemistry, with a strong focus on developing and modifying electrodes ⚗️🔬. Her research spans material science and nanomaterials for advanced chemical sensors, contributing to innovations in chemical detection technologies 🧪🧲. She is also deeply involved in quality control in chemistry, ensuring precision and accuracy in analytical methods ✅📏. Additionally, Dr. Wonsawat explores flow-based analysis techniques, enhancing the efficiency and automation of chemical measurements 💧🔁. Her work bridges scientific innovation and practical application, positioning her as a key contributor in modern chemical analysis and sensor development 🌟🧫.

Awards

Assist. Prof. Dr. Wanida Wonsawat is an accomplished innovator and educator 🎓🔬. In 2023, she earned a Silver Medal at JDIE Tokyo for her Probiotic Karanda Gummy project 🍇🥈 and was recognized as an outstanding teacher by the Boon-Tin Atthakorn Foundation 👩‍🏫🌟. Her earlier accolades include multiple Gold Medals at ARCHIMEDES in Moscow (2019, 2021) 🥇🇷🇺, Romania, and Sevastopol, and special awards from Morocco and Saudi Arabia 🌍🏆. In 2018, she received honors from Indonesia and Korea for her “PhosPhate-Check kits” project 🧪🇰🇷. Her journey of excellence began with a Poster Outstanding Award at ICAPMA 2015 in Thailand 🎖🇹🇭.

Research Focus

Assist. Prof. Dr. Wanida Wonsawat’s research primarily focuses on electrochemical sensors, analytical chemistry, and food and environmental safety 🧪🌱🍱. Her work involves the development of innovative electrochemical detection methods using materials like carbon nanotubes, graphene, and MXene for identifying hazardous substances such as Sudan dyes, heavy metals (Cd, Pb), pesticides, and mycotoxins ☣️🍷. She also contributes to biosensing technologies, detecting HPV DNA and Salmonella using advanced electrodes and lateral flow devices 🧬🦠. Her expertise bridges nanomaterials, sensor design, and automation in analytical platforms, ensuring sensitive, cost-effective, and rapid diagnostics for public health and environmental monitoring ⚡🔬📊.

Publication Top Notes

Analysis of sudan I, sudan II, sudan III, and sudan IV in food by HPLC with electrochemical detection: Comparison of glassy carbon electrode with carbon nanotube-ionic liquid …

Electrochemical detection of human papillomavirus DNA type 16 using a pyrrolidinyl peptide nucleic acid probe immobilized on screen-printed carbon electrodes

The simultaneous determination of isoproturon and carbendazim pesticides by single drop analysis using a graphene-based electrochemical sensor

A nanocomposite prepared from platinum particles, polyaniline and a Ti3C2 MXene for amperometric sensing of hydrogen peroxide and lactate

Polyaniline/graphene quantum dot-modified screen-printed carbon electrode for the rapid determination of Cr (VI) using stopped-flow analysis coupled with voltammetric technique

Graphene-carbon paste electrode for cadmium and lead ion monitoring in a flow-based system

Dual Colorimetric/Electrochemical Detection of Salmonella typhimurium Using a Laser-Induced Graphene Integrated Lateral Flow Immunoassay Strip

Highly sensitive determination of cadmium and lead using a low-cost electrochemical flow-through cell based on a carbon paste electrode

 

 

Rasim Mogulkoc | Experimental Design | Best Researcher Award

Rasim Mogulkoc | Experimental Design | Best Researcher Award

Prof Dr Rasim Mogulkoc, Selcuk University, Turkey

Prof. Dr. Rasim Mogulkoc, born March 20, 1967, in Gürün (Sivas), is a distinguished professor at Selcuk University Faculty of Medicine since August 2010. Specializing in endocrinology, cardiovascular physiology, neuroscience, apoptosis, and ischemia-reperfusion, he has led numerous BAP projects and supervised several doctoral and master’s theses. Fluent in English (KPDS-80), he is married with a daughter. 📚🔬

Publication profile

google scholar

Education

Born on March 20, 1967, in Gürün (Sivas), I completed my primary, secondary, and high school education locally before graduating from Fırat University in 1991. Following this, I pursued doctoral studies from 1993 to 1997.

Research focus

Based on AK Baltaci’s published papers, his research primarily focuses on the roles of trace elements like zinc and magnesium in physiological systems, particularly in endocrinology and neurochemistry. His studies investigate how these elements affect hormone levels, oxidative stress, and neurological functions. Baltaci explores diverse topics such as the impact of zinc deficiency, supplementation effects on oxidative markers, and the interplay of trace elements with thyroid hormones. His work contributes to understanding the biochemical mechanisms underlying health and disease, emphasizing applications in sports physiology and neurodegenerative conditions. 🧬🔬

Publication top notes

Molecular mechanisms of early and late LTP\

Effects of magnesium supplementation on testosterone levels of athletes and sedentary subjects at rest and after exhaustion

Effects of zinc deficiency and supplementation on malondialdehyde and glutathione levels in blood and tissues of rats performing swimming exercise

Opposite effects of zinc and melatonin on thyroid hormones in rats

Changes in the serum levels of trace elements before and after the operation in thyroid cancer patients

The roles of flavonols/flavonoids in neurodegeneration and neuroinflammation

Zinc supplementation ameliorates electromagnetic field-induced lipid peroxidation in the rat brain

Leptin and zinc relation: in regulation of food intake and immunity

Effects of magnesium supplementation on blood parameters of athletes at rest and after exercise

Effect of zinc supplementation on antioxidant activity in young wrestlers