Assist. Prof. Dr. Constantinos D. Zeinalipour-Yazdi | Ammonia Synthesis | Best Researcher Award

Assist. Prof. Dr. Constantinos D. Zeinalipour-Yazdi | Ammonia Synthesis | Best Researcher Award

Northeastern University London, United Kingdom.

Dr. Constantinos D. Zeinalipour-Yazdi is an Assistant Professor of Chemistry at Northeastern University London. He is a distinguished researcher known for his contributions to catalysis, materials science, and computational modeling. His work focuses on understanding chemical reaction mechanisms and developing novel catalysts and materials for diverse applications. His research employs density functional theory (DFT) and other computational methods to investigate reaction pathways and material behaviors. He has led multiple high-impact projects and contributed significantly to advancing theoretical chemistry and material science.

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🎓 Education

Dr. Constantinos D. Zeinalipour-Yazdi earned his Ph.D. in Chemistry from the University of California, San Diego & San Diego State University in 2006. Following his doctorate, he held prestigious research fellowships and academic appointments at leading institutions worldwide. He was a Research Fellow at University College London (UCL), where he contributed to advancements in computational chemistry and catalysis. He also held positions at the University of Cambridge and Imperial College London, focusing on density functional theory (DFT) and materials science applications. His extensive experience spans collaborations with top-tier universities and research centers, making significant contributions to theoretical and computational chemistry.

💼 Experience

Dr. Constantinos D. Zeinalipour-Yazdi is an Assistant Professor of Chemistry at Northeastern University London, where he focuses on computational and theoretical chemistry. He previously served as a Research Fellow under the Cyprus Research Promotion Foundation (RPF), contributing to groundbreaking research in molecular modeling and catalysis. As a Lead Investigator at the Environmental Molecular Sciences Laboratory (EMSL) at the Pacific Northwest National Laboratory (PNNL), he spearheaded studies on chemical reaction mechanisms and materials science applications. Additionally, he has been an active participant in multiple European Union and Engineering and Physical Sciences Research Council (EPSRC)-funded projects, collaborating on cutting-edge advancements in energy materials, catalysis, and computational chemistry.

🔬 Research Interests

Catalysis & Reaction Mechanisms: Investigating ammonia and hydrazine synthesis mechanisms on metal nitrides.

Materials Science: Developing and optimizing catalysts for reactions such as the Water-Gas Shift reaction.

Computational Chemistry: Utilizing DFT and multiscale simulations to study material properties and reaction pathways.

🏆 Awards & Recognitions

Multiple grants and research fellowships from EPSRC, EMSL, and EU Framework Programmes

Recognized for high-impact computational studies in catalysis and materials science

International Invention Awards recipient

📚 Selected Publications

A DFT assessment of the activation barrier for concerted proton transfer in cyclic water clusters (H₂O)ₙ where n = 3–8
Computational and Theoretical Chemistry (Feb 2025)
DOI: 10.1016/j.comptc.2024.115061
Co-authors: Numair Elahi

Emerging Trends in Palladium Nanoparticles: Sustainable Approaches for Enhanced Cross-Coupling Catalysis
Catalysts (Feb 2025)
DOI: 10.3390/catal15020181
Co-authors: Jude I. Ayogu, Numair Elahi

A study using physical sphere-in-contact models to investigate the structure of close-packed nanoparticles supported on flat hexagonal, square, and trigonal lattices
Chemical Physics (Jan 2025)
DOI: 10.1016/j.chemphys.2024.112464

3D Printed Sphere-in-Contact Models of Carbon Materials
Preprint (2024)
DOI: 10.2139/ssrn.4985077
Co-authors: Toby Chai, David Pullman, Deborah Gater, James Kneller

A computational study of H-bonded networks in cyclic water clusters, (H₂O)ₙ (n = 3–12)
Journal of Molecular Modeling (2024)

 

 

 

Assoc. Prof. Dr. Li Wang | Environmental Clean-up | Best Researcher Award

Assoc. Prof. Dr. Li Wang | Environmental Clean-up | Best Researcher Award

Dalian Maritime University, China.

Prof. Li Wang is an Associate Professor at Dalian Maritime University (DMU) and Head of the Plasma and Catalysis Research Group (PCRG). He holds an M.Sc. in Chemical Engineering and a Ph.D. in Catalytic Chemistry from Dalian University of Technology (DUT). After gaining research experience at DUT, he completed a postdoctoral fellowship at the University of Liverpool. Recognized for his contributions, he was awarded the Outstanding Young Scientist of LiaoNing Revitalization Talents (2020) and named among the World’s Top 2% Scientists (2024) by Stanford University. His research focuses on plasma-assisted catalysis, C1 chemistry, and environmental cleanup.

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🎓 Education

Prof. Li Wang holds a Ph.D. in Catalytic Chemistry from Dalian University of Technology (DUT), where he specialized in developing advanced catalytic processes for sustainable energy and environmental applications. Prior to his doctoral studies, he earned an M.Sc. in Chemical Engineering from DUT, gaining a strong foundation in chemical process engineering and materials science. His academic background has equipped him with expertise in plasma-assisted catalysis, C1 chemistry, and environmental clean-up technologies, contributing to innovative research in fuel production and emission control.

💼 Experience

Prof. Li Wang is currently an Associate Professor at Dalian Maritime University (DMU), a position he has held since 2018. He also leads the Plasma and Catalysis Research Group (PCRG), where he spearheads innovative research in plasma-assisted catalysis and environmental clean-up technologies. Before joining DMU, he gained international research experience as a Postdoctoral Researcher at the University of Liverpool, focusing on catalytic chemistry and sustainable energy applications. Prior to that, he worked as a Researcher at Dalian University of Technology (DUT), where he contributed to advancements in chemical engineering and materials science.

🔬 Research Interests

Carbon Conversion & C1 Chemistry (CH₄ & CO₂ conversion, methanol synthesis)

Plasma-Assisted Catalysis (Advanced materials for fuel production & emission control)

Environmental Cleanup (CO₂/NOₓ capture, NOₓ reduction)

Adsorbent Technologies (NOₓ adsorption, industrial pollution control)

🏆 Awards & Recognitions

Outstanding Young Scientist, LiaoNing Revitalization Talents (2020)

World’s Top 2% Scientists (2024) – Recognized by Stanford University (John P.A. Ioannidis)

📚 Selected Publications

Recent Progresses of Plasma-Catalytic CH₄/CO₂ Conversion to Oxygenates: A Short Review

📖 Journal: Current Opinion in Green and Sustainable Chemistry
📅 Publication Date: February 2025
👥 Contributors: Li Wang, Qingxi Yin, Xiaohan Zhai, Yanhui Yi

Plasma-Catalytic One-Step Steam Reforming of CH₄ to CH₃OH and H₂ Promoted by Oligomerized [Cu–O–Cu] Species on Zeolites

📖 Journal: Green Chemistry
📅 Publication Date: 2024
👥 Contributors: Wei Fang, Ximiao Wang, Shangkun Li, Yingzi Hao, Yuping Yang, Wenping Zhao, Rui Liu, Dongxing Li, Chuang Li, Xiaoxia Gao et al.

Tuning Selectivity of Acetic Acid and Alcohols by Brønsted and Lewis Acid Sites in Plasma-Catalytic CH₄/CO₂ Conversion over Zeolites

📖 Journal: Applied Catalysis B: Environment and Energy
📅 Publication Date: August 2024
👥 Contributors: Li Wang, Linhui Fan, Yuezhao Wang, Qian Chen, Yimin Zhu, Yanhui Yi

Plasma-Catalytic CO₂ Hydrogenation to Methanol over CuO-MgO/Beta Catalyst with High Selectivity

📖 Journal: Applied Catalysis B: Environmental
📅 Publication Date: March 2024
👥 Contributors: Qian Chen, Shengyan Meng, Rui Liu, Xiaohan Zhai, Xinkui Wang, Li Wang, Hongchen Guo, Yanhui Yi

Direct Conversion of CH₄ and CO₂ to Alcohols Using Plasma Catalysis over Cu/Al(OH)₃ Catalysts

📖 Journal: Chemical Engineering Journal
📅 Publication Date: June 2023
👥 Contributors: Li Wang, Yuezhao Wang, Linhui Fan, Hongli Xu, Bowen Liu, Jiaren Zhang, Yimin Zhu, Xin Tu

 

 

 

Mr. Stephen Kabasa | Chemistry | Best Researcher Award

Mr. Stephen Kabasa | Chemistry | Best Researcher Award

Institute of Nuclear Chemistry and Technology, Poland.

Stephen Ochieng Kabasa is a highly skilled researcher and graduate from the University of Nairobi, with an MSc in Nuclear Science. He is currently pursuing his PhD at the Instytut Chemii I Techniki Jadrowej in Warsaw, Poland. Stephen has a strong background in nuclear science and radiation technologies, specializing in gaseous and wastewater treatment, and has actively contributed to multiple publications in his field. His research combines advanced laboratory techniques with practical applications for environmental protection, with a particular focus on the removal of emerging organic pollutants using radiation technologies.

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🎓 Education

Stephen Ochieng Kabasa earned his MSc. in Nuclear Science (2012-2016) from the University of Nairobi, Institute of Nuclear Science and Technology, where he focused on advanced radiation technologies for environmental applications. He also holds a Bachelor of Science (2006-2010) from Moi University, which laid the foundation for his expertise in nuclear science and environmental analysis. His academic background has equipped him with a solid understanding of radiation technologies, environmental protection, and analytical techniques.

💼 Experience

Stephen Ochieng Kabasa has diverse experience spanning research, teaching, and industry roles. As a PhD Graduate Researcher (2020-2024) at Instytut Chemii i Techniki Jadrowej, Poland, he focused on advanced oxidation processes for wastewater and gaseous pollutant treatment using ionizing radiation, employing cutting-edge equipment like GC-MS and HPLC. During his time as a Business Intelligence Officer (2019-2020) at BURN Manufacturing USA LLC in Kenya, he managed the after-sales network across East Africa and Somalia, providing valuable data insights. As an Assistant Sessional Lecturer (2017-2019) at Technical University of Kenya, he taught organic and inorganic chemistry and contributed to curriculum development. Stephen also held roles as an After Sales/Market Analytics Officer (2016-2018) at BURN Manufacturing USA LLC, where he optimized service station operations, and as a Graduate Research Assistant (2012-2016) at the Institute of Nuclear Science and Technology, University of Nairobi, focusing on environmental sample analysis using advanced radionuclide techniques.

🔬 Research Interests

⚛️ Ionizing Radiation for Pollution Treatment

He specializes in applying ionizing radiation to degrade emerging organic pollutants, contributing to cleaner and safer ecosystems.

🔬 Advanced Analytical Techniques

Stephen utilizes advanced methods like gamma spectrometry, HPLC, LC-MS, and UV-Vis to assess the effectiveness of treatment processes and analyze pollutants.

🌱 Environmental Protection

His interdisciplinary approach seeks to advance sustainable solutions for environmental challenges, using radiation technologies to protect the environment from harmful contaminants.

📚 Publications

Kabasa, S., et al. (2024). Degradation of Hydroxychloroquine from Aqueous Solutions Under Fenton-Assisted Electron Beam Treatment Processes. Processes. Link

Kabasa, S., et al. (2024).Chloroquine Degradation in Aqueous Solution Under Electron Beam Irradiation.Nukleonika. Link

Kabasa, S., et al. (2024). Degradation of Hydroxychloroquine in Aqueous Solutions Under Electron Beam Treatment. Nukleonika. Link

 

 

 

Assoc. Prof. Dr. Hongxia Liu | Theoretical Chemistry | Women Researcher Award

Assoc. Prof. Dr. Hongxia Liu | Theoretical Chemistry | Women Researcher Award

Anshan Normal University, China

Dr. Hong-xia Liu is an Associate Professor at Anshan Normal University and a member of the Royal Society of Chemistry. With extensive expertise in theoretical and experimental chemistry, Dr. Liu’s research focuses on reaction mechanisms, green catalysis, and material design. She has published numerous papers in high-impact journals, reviewed for prestigious journals, and secured multiple competitive research grants. Her dedication to teaching and innovation makes her a respected figure in physical chemistry.

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Education 🎓

Dr. Hong-xia Liu earned her Ph.D. in Physical Chemistry from Jilin University, China (2005–2010). Under the mentorship of Prof. Jingyao Liu, her research focused on "Theoretical studies on the mechanism and kinetic properties of several important chemical reactions," emphasizing advanced computational methods and theoretical modeling to unravel intricate chemical processes. She previously obtained her B.Sc. in Chemistry from Inner Mongolia Normal University, China (2001–2005), where she built a strong foundation in the fundamental principles of chemistry.

Professional Experience 💼

Dr. Hong-xia Liu completed her Ph.D. in Physical Chemistry at Jilin University, China, from 2005 to 2010, where she conducted research under the guidance of Prof. Jingyao Liu. Her dissertation, titled "Theoretical Studies on the Mechanism and Kinetic Properties of Several Important Chemical Reactions," employed advanced computational techniques and theoretical modeling to explore the mechanisms and kinetics of complex chemical reactions. Prior to her doctoral studies, Dr. Liu earned a B.Sc. in Chemistry from Inner Mongolia Normal University, China, in 2005, establishing a strong foundational understanding of chemistry's core principles.

Research Interests 🔬

Reaction Mechanisms and Kinetics
Dr. Hong-xia Liu’s research delves into the study of chemical reaction mechanisms and kinetics, aiming to understand the underlying processes that drive chemical transformations. Her work uses advanced computational techniques to model and analyze reaction pathways, energy profiles, and rate-determining steps.

Green Catalysis and Organic Synthesis
Dr. Liu explores the use of green catalysis in organic synthesis, focusing on environmentally friendly processes that reduce waste and energy consumption. Her work aims to develop more sustainable and efficient catalytic systems for chemical reactions, promoting the use of renewable resources.

Raman Spectral Analysis for Aromaticity
Dr. Liu applies Raman spectroscopy to analyze aromaticity in molecules, using this technique to study the structural and electronic properties of aromatic compounds. This analysis provides valuable insights into the stability, reactivity, and behavior of aromatic systems in various chemical reactions.

Computational Chemistry
Dr. Liu employs computational chemistry tools such as VASP (Vienna Ab-initio Simulation Package), Gaussian, and Multiwell to conduct detailed studies of chemical systems. These tools allow for high-level quantum mechanical calculations, aiding in the investigation of molecular structures, reaction dynamics, and thermodynamic properties.

Awards and Grants 🏆

National Natural Science Foundation of China (2020–2022)Spiropyran-based membrane material for intelligent humidity control

Special Research Project of Anshan Normal University (2021–2022)Kinetics of Cl removal from tap water

Publications Top Notes 📚

Theoretical Prediction of the Reaction Mechanism Underlying the Active Phase of Bn (n = 3–5) and Cu-Doped Electron-Deficient Bn-1 Clusters: Reduction of CO2, Journal of Chemical Physics, 2024-12
Contributors: Hong-xia Liu, Ling Fu, Chao-zheng He. Link

Molecular Dynamics Simulation of Methane Dehydrogenation on Clusters of Cu4 and Cu3M (M@Fe, Co, Ni) Alloys, Reaction Kinetics, Mechanisms and Catalysis, 2024-11-27
Contributors: Hong-xia Liu, Xiaoze Sun, Ling Fu, Chao-Zheng He. Link

Research on the Application of Localized Argument-Driven Inquiry Teaching Model in a High School in Northeast China, Journal of Chemical Education, 2024-11-17
Contributors: Hong-xia Liu, Xiao-di Zeng, Rong Deng, Qiao-kun Li, Shuang Wu, Wen-dong Zhou. Link

Theoretical Study on Equilibrium, Thermodynamic, and Density Functional Models for Doped and Amination@TiO2 Removal of Cadmium (II) Ion from Wastewater, The European Physical Journal Plus, 2024-08-05
Contributors: Hong-xia Liu, Hong-bo Zhang, Ling Fu, Chao-zheng He. Link

Study on the Methane Dehydrogenation Reaction Catalyzed by Triangular Transition Metal: A Theoretical Research, Physica Scripta, 2023-10-01
Contributors: Hongxia Liu, Fu Ling, He Chaozheng. Link