Rui Feng – Heterogeneous Catalysis – Best Researcher Award

Rui Feng | Heterogeneous Catalysis | Best Researcher Award

Professor at China University of Mining and Technology | China

Rui Feng is a distinguished academic and researcher specializing in catalytic materials and advanced chemical engineering processes. As a Professor and Master’s Supervisor at the China University of Mining and Technology, he contributes significantly to both education and research. Rui Feng actively participates in professional organizations, lending his expertise to various high-level projects and initiatives. With a strong publication record and leadership in collaborative research, his work continues to advance innovative approaches in chemical engineering. Rui Feng is widely recognized for bridging academic research and industrial applications, ensuring meaningful scientific contributions to the field.

Professional Profile

Scopus | ORCID

Education

Rui Feng’s educational background has shaped his expertise in catalytic materials, chemical engineering, and advanced research methodologies. His academic journey provided a strong foundation for his career as a professor, researcher, and technical expert in chemical sciences. Building on rigorous training, he has acquired comprehensive knowledge of chemical reactions, material synthesis, and energy conversion technologies. His academic qualifications have supported his leadership roles in both national and international research initiatives. Rui Feng’s education emphasizes a balance between theoretical understanding and practical application, fostering innovation in his field and enabling him to guide students toward excellence in scientific research.

Professional Experience

Rui Feng has established himself as a leading figure in chemical engineering through his extensive teaching and research experience. At the China University of Mining and Technology, he supervises graduate students and collaborates on advanced research projects. His professional involvement extends beyond academia, serving as a technical consultant for enterprises and governmental organizations. Rui Feng has led numerous large-scale projects, including CO₂ capture and catalytic process optimization. His expertise benefits both academic institutions and industry, showcasing his ability to bridge research with real-world application. Rui Feng’s experience highlights his dedication to scientific innovation and technological development.

Research Interest

Rui Feng focuses his research on the development of catalytic materials and their applications in energy and environmental solutions. His primary interest lies in alumina-, silica-, and metal/zeolite-based composites for CO₂ and light hydrocarbon conversion. Rui Feng’s work contributes to optimizing methanol synthesis, carbonylation, and catalytic cracking processes, addressing global energy challenges. His innovative approach integrates fundamental chemistry with industrial-scale application, making him a valuable contributor to sustainable chemical engineering. Rui Feng’s research aims to create energy-efficient, environmentally friendly technologies, reflecting a commitment to advancing materials science while addressing critical environmental and industrial concerns.

Award And Honor

Rui Feng has earned recognition for his contributions to chemical engineering through prestigious awards and honorary roles. His expertise is sought after by industry leaders and government organizations, reflected in his position as a technical expert in high-tech enterprise recognition for Jiangsu Province. Rui Feng’s involvement in scientific advisory roles in Xuzhou City underscores his leadership and influence in advancing chemical research. His accomplishments and awards highlight his commitment to innovation and his impact on both academia and industry. Rui Feng’s honors reflect a career dedicated to solving critical challenges in chemical engineering and catalysis.

Research Skill

Rui Feng possesses exceptional skills in designing and synthesizing advanced catalytic materials for energy and chemical transformations. He specializes in developing zeolite-based catalysts and optimizing reaction mechanisms for processes like CO₂ hydrogenation and catalytic cracking. Rui Feng’s expertise extends to large-scale research project management and technical consultation, demonstrating his ability to deliver practical solutions to industrial challenges. He is adept at integrating experimental design with theoretical modeling to achieve innovation. His strong analytical abilities and collaborative research style have resulted in high-impact publications and practical advancements, establishing him as a leading expert in catalysis and materials science.

Publications

Rui Feng has an impressive record of scholarly contributions, with over 50 SCI-indexed publications in leading international journals. His works appear in Industrial & Engineering Chemistry Research, Catalysis Today, Chemical Engineering Journal, and other prestigious outlets. These publications showcase groundbreaking research on catalytic processes, energy transformation, and material innovation. Rui Feng’s papers emphasize experimental rigor and application-driven findings, helping bridge theoretical science with practical advancements. His global recognition in scientific communities demonstrates his role in shaping modern chemical engineering research. Rui Feng’s publications provide invaluable insights to researchers and industry professionals in energy and catalysis.

Title: Selective cyclohexanol oxidation to cyclohexanone over a Co/In-doped porous carbon via persulfate activation
Journal: Gao Xiao Hua Xue Gong Cheng Xue Bao Journal of Chemical Engineering of Chinese Universities, 2025

Title: Size-Activity Relationship of TiO2-Supported Pt Nanoparticles in Hydrogenation Reactions
Journal: Inorganics, 2025

Title: Enhancing Hydroxylation of Benzene to Phenol over Vanadium-Modified Hollow TS-1 Catalysts
Journal: Industrial and Engineering Chemistry Research, 2025

Title: Balanced adsorption and oxidation in a porous P, N-doped carbon prepared by melt-salt-mediated strategy for enhanced Fenton-like reaction
Journal: Chemical Engineering Science, 2025

Title: Vanadium-Modified TS-1 Catalysts with Enhanced Lewis Acid and Charge Density for Efficient Hydroxylation of Benzene to Phenol
Journal: Industrial and Engineering Chemistry Research, 2024

Conclusion

Rui Feng stands out as a highly accomplished academic and technical expert, combining a strong research portfolio with leadership in chemical engineering innovation. His expertise in catalytic materials development and process optimization contributes significantly to addressing energy and environmental challenges. Through his extensive publications, advisory roles, and project leadership, Rui Feng has made a lasting impact on both academia and industry. His dedication to advancing chemical science reflects a balance of research excellence and applied technology. Rui Feng’s professional journey underscores his commitment to driving innovation in energy systems and catalytic engineering on a global scale.

Eyup Akgun | Organic-Inorganic | Best Researcher Award

Eyup Akgun | Organic-Inorganic | Best Researcher Award

Kahramanmaras Sutcu Imam University - Turkey

AUTHOR PROFILE

SCOPUS

SUMMARY  

Eyüp Akgün is a dedicated researcher in the field of inorganic and coordination chemistry with a strong focus on polyoxometalate (POM)-based hybrid materials. The core of the research includes synthesis, structural characterization, and evaluation of electrochemical, biological, and photophysical properties. The academic trajectory demonstrates consistent engagement in both fundamental and applied science, particularly targeting antimicrobial, anticancer, and catalytic applications. Through active participation in high-level research projects and continuous scholarly publication, the profile reflects a blend of scientific depth and practical innovation in material sciences and molecular chemistry.

EDUCATION  

The academic foundation was established with a Bachelor’s and Master’s degree in Chemistry from Kahramanmaraş Sütçü İmam University. Postgraduate research focused on metal-salen complexes, especially their oxidation behavior on aromatic compounds with heteroatoms. This early specialization in coordination chemistry provided a platform for future research into POM-based hybrids and their diverse applications. Advanced chemical synthesis techniques, analytical evaluations, and interdisciplinary studies in catalytic processes were key pillars of the educational journey, cultivating a solid theoretical and experimental base for subsequent scientific exploration and collaboration.

PROFESSIONAL EXPERIENCE  

Research participation includes key roles in TÜBİTAK-funded projects and academic investigations across multiple scientific themes. Notable work includes hybrid compound development combining organic and inorganic materials, explored for both biological and catalytic properties. Contributions span roles as a project researcher from 2005 to present, involving both synthesis and analytical phases. Collaborations with renowned scholars and involvement in peer-reviewed publications underscore a commitment to ongoing discovery and refinement in chemical sciences. The experience reflects strong laboratory proficiency, project management capabilities, and deep involvement in experimental design and execution within academic research frameworks.

RESEARCH INTEREST  

Core research interests lie in coordination chemistry, particularly polyoxometalates (POMs), metal-salen complexes, Schiff base ligands, and their application in biological and catalytic systems. Emphasis is placed on the structural modification of hybrid materials and the exploration of their electrochemical, photophysical, DNA-binding, and antimicrobial behaviors. Focus extends to understanding supramolecular assembly and its implications for material science and biochemistry. Such interdisciplinary engagement bridges inorganic chemistry with biomedical relevance, aiming to develop materials with novel functional properties for sensing, treatment, and advanced catalysis applications.

AWARD AND HONOR  

Recognition comes through inclusion in major national research projects under TÜBİTAK and ongoing publication in reputable international journals. Consistent contributions to the field, particularly through collaborative works with leading chemists, serve as acknowledgment of research value. Selection for funded doctoral and master’s-level scientific projects also indicates the trust and support of the academic and scientific community. These roles and achievements reflect a profile of growing prestige, responsibility, and intellectual leadership within the field of applied and theoretical chemistry.

RESEARCH SKILL  

Extensive skills include advanced synthesis of coordination compounds, X-ray crystallography, spectroscopic analysis (UV-Vis, FTIR, NMR), electrochemical evaluation, and DNA-binding studies. Proficient in manipulating polyoxometalate-based hybrids and Schiff base complexes for specific functionalities. Skilled in evaluating bioactivity, including antimicrobial and anticancer properties, and in correlating structural aspects with chemical behavior. Well-versed in multidisciplinary collaboration, data interpretation, and scientific writing. These skills enable robust experimental design, precise analytical procedures, and innovative solution-building in coordination chemistry and materials science.

PUBLICATIONS TOP NOTED  

Recent publications in high-impact journals highlight cutting-edge research in POM-based hybrid structures. Articles explore synthesis, structure, DNA interaction, and biological effects of Keggin and Anderson type POMs. Noteworthy works include studies on photophysical behaviors, supramolecular assembly, and antimicrobial evaluation. Publications in Journal of Molecular Structure, Polyhedron, and Inorganic Chemistry Communications reinforce scientific credibility and research contribution. Collaborative efforts with national and international chemists demonstrate influence and integration within the wider research community, showcasing innovation in hybrid material applications.

CONCLUSION  

Eyüp Akgün’s scientific journey reflects a steady commitment to chemical research, marked by curiosity, depth, and practical relevance. The body of work bridges academic theory with real-world application in bioinorganic and materials chemistry. Through active project involvement, peer-reviewed dissemination, and multidisciplinary collaboration, the career trajectory continues to shape developments in molecular engineering and hybrid compounds. Looking ahead, the focus remains on expanding research into biologically relevant coordination complexes and advancing novel materials for analytical, therapeutic, and environmental use.