Svitlana Orlyk | Physical Chemistry | Best Researcher Award

Prof. Svitlana Orlyk | Physical Chemistry | Best Researcher Award

Lead Scientist from L.V. Pisarzhevsky Institute of Physical Chemistry of NAS of Ukraine, Ukraine

Professor Svitlana M. Orlyk is a distinguished chemist specializing in catalytic redox processes, environmental catalysis, and hydrogen energy. She has made significant contributions to the development of advanced catalysts for pollution control, fuel reforming, and greenhouse gas conversion. With over four decades of experience, she has held key leadership positions at the L.V. Pisarzhevsky Institute of Physical Chemistry of NASU, where she currently serves as the Head of the Department of Catalytic Redox Processes. Professor Orlyk has authored more than 370 scientific publications, including over 200 peer-reviewed articles and 23 patents. Her research has been featured in multiple international monographs, highlighting her impact on the global scientific community. She has received prestigious awards, including the State Prize of Ukraine in Science and Technology and the Order of Princess Olga. Her expertise in heterogeneous catalysis, reaction kinetics, and catalyst design has led to innovative solutions for industrial and environmental challenges. Through her leadership and mentorship, she continues to drive advancements in catalysis, supporting the next generation of researchers in the field.

Professional Profile

Education

Professor Orlyk’s academic journey began at Kyiv Polytechnic Institute, where she earned a degree in Chemical Technology, specializing in Basic Processes of Chemical Production and Chemical Cybernetics in 1976. She pursued postgraduate studies in Chemical Kinetics and Catalysis at the L.V. Pisarzhevsky Institute of Physical Chemistry of NASU, completing her Ph.D. in 1982. Her doctoral research focused on catalytic reactions, laying the foundation for her future contributions to environmental catalysis and hydrogen energy. In 1998, she obtained a Doctor of Chemical Sciences degree from the same institute, marking a significant milestone in her academic career. Recognized for her expertise, she was appointed as a Professor in Chemical Kinetics and Catalysis in 2009. Her educational background has provided her with a strong foundation in chemical reaction engineering, catalyst design, and kinetic modeling. Through continuous learning and research, she has established herself as a leader in the field, contributing to both theoretical advancements and practical applications in catalysis. Her commitment to education extends to mentoring students and young researchers, ensuring the growth and sustainability of catalytic science in Ukraine and beyond.

Professional Experience

Professor Orlyk has had a progressive and impactful career in chemical research, spanning over 40 years. She began her professional journey as an Engineer in 1976 before transitioning into research, working as a Junior Scientific Associate from 1982 to 1986. Her expertise and dedication led to her promotion as a Scientific Associate (1986-1988), followed by Senior Scientist (1988-1999). Between 1999 and 2000, she served as a Lead Scientist, contributing significantly to catalytic reaction mechanisms and industrial applications of catalysts. In 2000, she was appointed as the Head of the Department of Catalytic Redox Processes at the L.V. Pisarzhevsky Institute of Physical Chemistry of NASU, a role she continues to hold. Under her leadership, the department has made significant advancements in catalyst design for environmental and industrial applications. Her work has influenced the development of efficient catalytic systems for pollution reduction, energy production, and sustainable chemistry. Throughout her career, she has collaborated with numerous researchers and institutions, further expanding the reach of her work in the international scientific community.

Research Interests

Professor Orlyk’s research focuses on the physicochemical principles of catalytic processes, particularly in environmental catalysis, hydrogen energy, and sustainable chemical production. She specializes in the kinetics and mechanisms of heterogeneous catalytic redox reactions, including those involving nitrogen oxides, carbon compounds, sulfur species, hydrocarbons, and oxygenates. Her work is aimed at designing next-generation catalysts for critical industrial applications, such as neutralizing harmful emissions (CO, NOx, hydrocarbons), reforming hydrocarbon fuels, and converting greenhouse gases (CO₂, CH₄, N₂O) into valuable chemicals. She is also actively involved in developing bifunctional catalysts for tandem processes that produce essential organic compounds from C1-C4 alkanes and bioalcohols. By integrating fundamental reaction mechanisms with practical catalyst development, her research contributes to both scientific innovation and environmental sustainability. Her investigations into advanced catalytic materials, including zeolites and cerium-based nanocatalysts, have led to breakthroughs in cleaner industrial processes and energy-efficient technologies.

Research Skills

Professor Orlyk possesses a diverse set of research skills in catalytic science, including catalyst synthesis, kinetic modeling, surface chemistry analysis, and reaction mechanism elucidation. She is proficient in designing and characterizing heterogeneous catalysts using advanced spectroscopic and microscopic techniques. Her expertise in chemical kinetics allows her to develop predictive models for catalytic reactions, optimizing performance for industrial applications. She has extensive experience with gas-phase and liquid-phase catalytic processes, particularly in environmental catalysis and energy conversion. Her work involves the integration of computational chemistry with experimental data to enhance catalyst efficiency and selectivity. She is also skilled in patent development, having secured 23 patents related to innovative catalytic materials and processes. Her ability to translate fundamental research into practical applications demonstrates her strength in bridging scientific discovery with industrial needs. Additionally, her leadership in research project management and mentorship highlights her commitment to advancing the field of catalysis through collaboration and knowledge dissemination.

Awards and Honors

Professor Orlyk’s contributions to catalysis and chemical sciences have been recognized through numerous prestigious awards. In 2000, she received the L.V. Pisarzhevsky Award of NAS of Ukraine for her research on selectivity in complex catalytic reactions. Her outstanding contributions to surface chemistry and catalysis earned her the State Prize of Ukraine in Science and Technology in 2008, acknowledging her work on adsorbed layers on transition metal surfaces. In recognition of her scientific achievements and service to Ukraine’s research community, she was awarded the Order of Princess Olga in 2019, one of the highest honors for distinguished women in science and academia. Beyond these national recognitions, her extensive publication record and inclusion in international monographs highlight her impact on the global scientific stage. Her achievements reflect a lifelong dedication to advancing catalysis for environmental sustainability and industrial efficiency.

Conclusion

Professor Svitlana M. Orlyk is a leading expert in catalytic redox processes, with an outstanding career dedicated to environmental catalysis, hydrogen energy, and sustainable chemical production. Her extensive research, leadership, and mentorship have significantly contributed to advancements in catalyst design and reaction kinetics. With over 370 scientific publications, numerous awards, and a strong record of innovation, she stands as a prominent figure in the field of chemistry. Her ability to combine fundamental research with industrial applications has led to impactful solutions for pollution control and energy efficiency. While her international collaborations and industry partnerships could be further strengthened, her current contributions already position her as an exceptional researcher. As Head of the Department of Catalytic Redox Processes, she continues to drive scientific progress and mentor the next generation of chemists, ensuring the sustainability of catalytic science. Her dedication, expertise, and accomplishments make her a highly deserving candidate for recognition as a top researcher in her field.

Publication Top Notes

  1. Vapor-Phase Carbonylation of Methanol with the Obtaining of Acetyls on Solid-Phase Catalysts: A Review

    • Authors: A.Y. Kapran, Y.I. Pyatnitsky, V.I. Chedryk, S.M. Orlyk
    • Year: 2024
  2. Effect of Surface Acidity/Basicity of Cr/Zn−BEA Zeolite Catalysts on Performance in CO₂-PDH Process

    • Authors: S.M. Orlyk, A.Y. Kapran, V.I. Chedryk, Y.M. Nychiporuk, P.I. Kyriienko, S. Dzwigaj
    • Year: 2024
    • Citations: 3
  3. Influence of Chromium in Cr/Zn-BEA Metal–Zeolite Composites on Their Acid–Base Characteristics and Catalytic Properties in the Processes of Propane Dehydrogenation

    • Authors: S.M. Orlyk, N.V. Vlasenko, V.I. Chedryk, A.Y. Kapran, S. Dzwigaj
    • Year: 2024
  4. The Effect of Modification of Zn–Mg(Zr)Si Oxide Catalysts with Rare-Earth Elements (Y, La, Ce) in the Ethanol-to-1,3-Butadiene Process

    • Authors: O.V. Larina, O.V. Zikrata, L.M. Alekseenko, S.O. Soloviev, S.M. Orlyk
    • Year: 2023
  5. Fast Synthesis of MgO–Al₂O₃ Systems: Effect on Physicochemical Characteristics and Catalytic Properties in Guerbet Condensation of Ethanol

    • Authors: K.V. Valihura, O.V. Larina, P.I. Kyriienko, S.O. Soloviev, S.M. Orlyk
    • Year: 2023
    • Citations: 1
  6. CO₂-Assisted Dehydrogenation of Propane to Propene over Zn-BEA Zeolites: Impact of Acid–Base Characteristics on Catalytic Performance

    • Authors: S.M. Orlyk, P.I. Kyriienko, A.Y. Kapran, V.I. Chedryk, D. Balakin, J. Gurgul, M. Zimowska, Y. Millot, S. Dzwigaj
    • Year: 2023
    • Citations: 11
  7. Catalytic Properties and Resource Characteristics of Modified Nickel Composites in the Processes of Oxidative Reforming of C₁-C₄ Alkanes

    • Authors: S.M. Orlyk, V.I. Chedryk, S.O. Soloviev, O.D. Vasylyev
    • Year: 2022
  8. Effect of Acid–Base Characteristics of Zeolite Catalysts on Oxidative Dehydrogenation of Propane with Carbon Dioxide

    • Authors: A.Y. Kapran, S.M. Orlyk
    • Year: 2022
    • Citations: 1

 

Ajoy Kumar Bauri | Chemistry | Best Researcher Award

Dr. Ajoy Kumar Bauri | Chemistry | Best Researcher Award

Scientific Officer F at Bhabha Atomic Research Centre, India

Dr. Ajoy Kumar Bauri is a distinguished chemist from India, renowned for his extensive research in organic chemistry and its applications in medicinal chemistry. His work primarily focuses on the isolation and characterization of bioactive compounds from natural sources, aiming to discover potential therapeutic agents. Over the years, Dr. Bauri has contributed significantly to the scientific community through his research on anti-proliferative agents, photobiologically active compounds, and the structural elucidation of complex organic molecules. His studies have been pivotal in understanding the chemical properties and biological activities of various natural products, thereby advancing the field of medicinal chemistry.

Professional Profile

Education

Dr. Bauri’s academic journey began with a Master of Science (M.Sc.) in Organic Chemistry from Visva-Bharati University in Santiniketan, West Bengal, India, completed between June 1986 and June 1988. To further his research expertise, he pursued a postdoctoral fellowship at the Shiga University of Medical Science in Otsu, Shiga, Japan, from March 2007 to March 2008. During this fellowship, he engaged in advanced research in chemistry, honing his skills in the isolation and structural analysis of organic compounds. This international experience enriched his scientific perspective and laid a strong foundation for his future research endeavors.

Professional Experience

Dr. Bauri’s professional career is marked by significant roles in both industry and academia. He served as a Chemical Engineer in the Reactor Engineering Division at the Bhabha Atomic Research Centre (BARC) in Mumbai, Maharashtra, India, from March 1991 to March 1997. In this capacity, he was involved in research and development activities pertinent to reactor engineering and chemical processes. Prior to this, he held a teaching position at Bharat Aluminium Company Ltd (BALCO) in Asansol, West Bengal, India, from July 1988 to June 1991, where he contributed to the education and training of junior college students in chemistry.

Research Interests

Dr. Bauri’s research interests are deeply rooted in the field of organic and medicinal chemistry. He focuses on the isolation, structural elucidation, and biological evaluation of natural products, particularly those with potential anti-cancer properties. His work includes the study of phenolic compounds derived from spices, such as malabaricone B, which has been shown to induce mitochondrial damage in lung cancer cells via a p53-independent pathway. Additionally, he has investigated halogenated depsides from lichens for their anti-proliferative activities. Dr. Bauri is also interested in the photobiological activities of furanocoumarins and their potential therapeutic applications.

Research Skills

Throughout his career, Dr. Bauri has developed a robust set of research skills. He is proficient in various chromatographic techniques for the isolation of natural products and has extensive experience in spectroscopic methods, including nuclear magnetic resonance (NMR) and mass spectrometry, for structural elucidation. His expertise extends to X-ray crystallography, which he has utilized to confirm the structures of complex organic molecules. Dr. Bauri is also skilled in conducting in vitro biological assays to evaluate the anti-proliferative activities of compounds, employing techniques such as the Sulforhodamine B (SRB) assay to assess cytotoxicity against various human cancer cell lines.

Awards and Honors

Dr. Bauri’s contributions to the field of chemistry have been recognized through various awards and honors. Notably, he secured funding from the Japan Society for the Promotion of Science for his project on the separation of nanocarbon materials through molecular recognition with diporphyrin nanotweezers. This grant underscores his innovative approach to research and his ability to attract competitive funding. Additionally, his publications in high-impact journals and collaborations with international researchers highlight his standing in the scientific community.

Conclusion

Dr. Ajoy Kumar Bauri’s career exemplifies a profound commitment to advancing organic and medicinal chemistry. His extensive research on natural products has not only expanded the understanding of their chemical and biological properties but also opened avenues for the development of novel therapeutic agents. Through his academic and professional endeavors, Dr. Bauri has made significant contributions to science, demonstrating a blend of theoretical knowledge and practical expertise. His work continues to inspire and influence research in the field of medicinal chemistry.

Publication Top Notes

  1. Exhibition of Förster resonance energy transfer from CdSe/ZnS quantum dot to zinc porphyrazine studied in solution
    • Authors: Anamika Ray, Sumanta Bhattacharya, Ajoy Bauri
    • Year: 2019
    • Journal: Journal of Molecular Liquids
    • Volume: 276
    • Pages: 770-778
    • Citations: 24
  2. Analysis of Chemical Constituents of Steam Distillate of Trachyspermum roxburghianum
    • Authors: Ajoy Bauri
    • Year: 2018
    • Journal: American Journal of Food Science & Nutrition
    • Volume: 5(4)
    • Pages: 76-81
  3. Anti-proliferative Active Flavones from the Methanol Extract of Indian Herb Artemisia reticulata
    • Authors: Ajoy Bauri
    • Year: 2018
    • Journal: American Journal of Pharmacy & Pharmacology
    • Volume: 5(4)
    • Pages: 27-32
  4. Anti-proliferative Allyl Phenol from the Methanol Extract of Piper betle
    • Authors: Ajoy Bauri
    • Year: 2018
    • Journal: American Journal of Pharmacy & Pharmacology
    • Volume: 5(3)
    • Pages: 13-18
  5. Molecular Assembly of PC70BM with a Designed Monoporphyrin: Spectroscopic Investigation in Solution and Theoretical Calculations
    • Authors: Subrata Nayek, Sneha Paul, Ajoy Bauri, Sumanta Bhattacharya
    • Year: 2018
    • Journal: Journal of Molecular Liquids
    • Volume: 272
    • Pages: 137-150
    • Citations: 12
  6. Study of Chemical Physics on Energy Transfer Phenomenon between Quantum Dots and Designed Diporphyrin in Solution
    • Authors: Anamika Ray, Sumanta Bhattacharya, Ajoy Bauri
    • Year: 2018
    • Journal: Journal of Molecular Liquids
    • Volume: 263
    • Pages: 64-71
  7. Synthesis and Evaluation of Polyphenolic Malabaricones for their Anti-cancer Potential
    • Authors: Ajoy Bauri
    • Year: 2018
    • Journal: BARC Newsletter
    • Issue: September-October
  8. The Spice Derived Phenolic, Malabaricone B, Induces Mitochondrial Damage in A549 Cells via p53-Independent Pathway
    • Authors: Ajoy Bauri
    • Year: 2018
    • Journal: Food & Function
    • Volume: 9(11)
    • Pages: 5715-5727
  9. (10R,13R)-17-(6-Hydroxy-5-methylheptan-2-yl)-10,13-dimethyl-2,3,4,7,10,11,12,13,14,15,16,17-tetradecahydro-1H-cyclopenta[a]phenanthren-3-ol Hemihydrate: A Bioactive Steroid Isolated from the Indian Herb Artemisia reticulata
    • Authors: Ajoy Bauri
    • Year: 2017
    • Journal: Journal of Molecular Liquids
  10. Crystal Structure of a Photobiologically Active Brominated Angular Pyranocoumarin: Bromo Hydroxyl Seselin
    • Authors: Ajoy Bauri
    • Year: 2017
    • Journal: Acta Crystallographica Section E
    • Volume: 73
    • Pages: 453-455