Ivan Marović | Project Management | Best Researcher Award

Dr. Ivan Marović | Project Management | Best Researcher Award

University of Rijeka, Faculty of Civil Engineering | Croatia

Dr. Ivan Marović, a distinguished academic at the University of Rijeka, Faculty of Civil Engineering, has dedicated over twenty years to advancing research and education in the field of civil engineering, progressing from research assistant to full professor. His expertise lies in Project Management, particularly in management information systems, multi-criteria decision analysis, and soft computing methods. A recipient of numerous prestigious awards-including the Best Doctoral Thesis Award from the Croatian Association of Civil Engineers, the Vera Johanides Award from the Croatian Academy of Technical Sciences, the UNIRI Foundation Award for young interdisciplinary scientists, several scientific and teaching awards from UNIRI and GRADRI, and the Global Peer Review Award (Clarivate Analytics) for ranking among the top 1% of reviewers globally in Environment and Ecology as well as Cross-Field-Dr. Marović has made remarkable contributions to both academia and research innovation. His current and past research projects span critical areas such as climate change adaptation for coastal structures, performance management in construction using soft computing, artificial intelligence applications in project planning, and sustainable urban management. Notable projects include COS, GAIA COFUND, PerfMAN, CRESCO Adria, and DSC4SUM, among others, all under the aegis of prestigious funding schemes such as Horizon Europe, INTERREG V-A Italy–Croatia, and the University of Rijeka’s Experienced Researchers Grant Scheme. Through his interdisciplinary research and leadership, Dr. Marović continues to shape innovative methodologies that enhance the resilience, efficiency, and sustainability of civil engineering practices.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

"Application of multi-criteria decision-making methods in the selection of a sustainable solution in urban planning"

"Hybrid urban block: The end outcome of the city's filling and extension"

"The Role of the Built Environment in Achieving Sustainable Development: A Life Cycle Cost Perspective"

"Making Informed Choices: AHP and SAW for Optimal Formwork System Selection"

"Understanding and Quantifying the Impact of Adverse Weather on Construction Productivity"

Nurulhasanah Othman | Technological Networks | Best Researcher Award

Dr. Nurulhasanah Othman | Technological Networks | Best Researcher Award

University of Science | Malaysia

Dr. Nurulhasanah Othman is a distinguished researcher recognized for her extensive contributions in the fields of molecular parasitology, proteomics, and infectious disease research. As a Principal Investigator and Co-Researcher on numerous national and university-funded projects, her work reflects a deep commitment to advancing biomedical science and public health. She currently leads a national grant project under the Ministry of Education Malaysia (Kementerian Pendidikan Malaysia) focusing on elucidating the potential inhibitory roles of dextromethorphan and azathioprine targeting Rho GTPase to combat metronidazole-resistant E. histolytica HM1-IMSS (MTZR). Her collaborative projects span a range of innovative studies, including comparative proteome profiling in cervical cancer tissues, identification of immunogenic proteins in G. duodenalis, exploration of antibody profiles in Strongyloides stercoralis, and the development of novel multiplex qPCR assays for triple-negative breast cancer markers. Dr. Nurulhasanah has also served as the Principal Investigator for multiple University Sains Malaysia (USM) research grants, including investigations into pyrethroid resistance in Aedes aegypti, proteomic analyses of Entamoeba histolytica for vaccine development, and protein detection studies using MALDI-TOF/TOF technology. As a Co-Researcher, she has contributed to large-scale genome projects, such as the genomic and proteomic analyses of Malaysian mangrove crab species and horseshoe crabs, as well as molecular diagnostic assay development for Leptospira spp. detection. Through her leadership and interdisciplinary collaborations, Dr. Nurulhasanah has made significant strides in proteomic-based pathogen research, genomic studies, and the pursuit of novel molecular tools for disease control and therapeutic innovation.

Profiles: Orcid ID | Scopus

Featured Publications

"Application of Proteomics to the Study of the Therapeutics and Pathogenicity of Giardia duodenalis"

"Entamoeba histolytica: Membrane and Non-Membrane Protein Structure, Function, Immune Response Interaction, and Vaccine Development"

"A Review: Natural and Synthetic Compounds Targeting Entamoeba histolytica and Its Biological Membrane"

"Evaluation of Total Female and Male Aedes aegypti Proteomes Reveals Significant Predictive Protein–Protein Interactions, Functional Ontologies, and Differentially Abundant Proteins"

"Entamoeba histolytica: Proteomics Bioinformatics Reveal Predictive Functions and Protein–Protein Interactions of Differentially Abundant Membrane and Cytosolic Proteins"

Bin Song | Technological Networks | Best Researcher Award

Dr. Bin Song | Technological Networks | Best Researcher Award

Southwest Petroleum University | China

Dr. Bin Song, Doctor of Engineering, is an Associate Researcher and Master's Supervisor at Southwest Petroleum University. His research is dedicated to gas safety and integrity assessment, hydrogen storage and transportation, and efficient utilization. He has authored more than 20 high-level academic papers, with 16 indexed in SCI, and holds 4 national invention patents, including one that has successfully undergone technological transformation. In addition, he has contributed to the compilation of 2 industry/township standards, reflecting his active role in advancing research and practice in the field.

Profiles: Orcid ID

Featured Publications

"Experimental and numerical study on explosion characteristics and hazards of methane-air mixtures in a chamber"

"Gas dispersion and non-uniform explosion characteristics in large dining venues: numerical simulation and experimental validation"

"Quantitative risk assessment of gas leakage and explosion in open kitchens and partitioned kitchens"

June Round | Biological Networks | Best Researcher Award 

Dr. June Round | Biological Networks | Best Researcher Award 

University of Utah | United States

Author Profiles

Scopus

Google Scholar

Early Academic Pursuits

Dr. June Round’s academic journey reflects a foundation of dedication and scholarly excellence. Beginning with a B.S. in Biology (Cum Laude) at California Lutheran University, she distinguished herself early through departmental honors and multiple scholarships. Her passion for molecular biology led to an M.S. from the University of the Pacific, followed by a D.Phil. in Microbiology, Immunology, and Molecular Genetics at UCLA, supported by highly competitive fellowships. Her formative postdoctoral training at the California Institute of Technology under Sarkis K. Mazmanian provided a strong platform to explore the intricate interplay between microbiota and host immunity, setting the stage for her pioneering career.

Professional Endeavors

Currently serving as a Professor at the University of Utah, Dr. Round has held numerous leadership roles including Director of the Mountain West Microbiota Alliance (MoWMA) and Co-Director of the Microbiota and GI Immunology Consortia (MAGIC). She has chaired multiple search committees, overseen postdoctoral studies, and contributed extensively to university-level, college-level, and departmental governance. Her sustained involvement in NIH study sections, national symposia, and scientific advisory boards underscores her standing as a leader in immunology and microbial pathogenesis.

Contributions and Research Focus

Dr. Round’s research focuses on microbiota–immune system interactions, particularly their role in regulating immune tolerance and driving inflammatory diseases. Her laboratory has produced high-impact work elucidating mechanisms by which commensal microbes shape host immunity, contributing to transformative understanding in immunology, microbiology, and gastrointestinal health. Her investigations into toll-like receptors, dysbiosis, and immune regulation have provided new frameworks for therapeutic exploration in autoimmune and inflammatory disorders.

Impact and Influence

The significance of Dr. Round’s research is reflected in her numerous prestigious awards, including the NIH Innovator Award, Packard Fellowship, Pew Scholar Award, Burroughs Wellcome Investigator in Pathogenesis, and the W.M. Keck Research Award. These honors not only recognize her innovative contributions but also demonstrate her influence in shaping the field. She has trained and mentored a generation of young scientists, many of whom now serve as professors, researchers, and clinicians in leading institutions worldwide—an enduring testament to her academic leadership.

Academic Citations and Recognition

Dr. Round’s scholarship has been widely published in top-tier journals including Cell, Nature Reviews Immunology, Science Immunology, and Annual Review of Microbiology. Her reviews and original research articles are highly cited, frequently shaping discourse in immunology and microbiome research. Her contributions extend beyond publications through book chapters and invited conference proceedings, amplifying her thought leadership in the global scientific community.

Legacy and Future Contributions

Dr. Round’s legacy lies in bridging microbiology and immunology, redefining the microbiota’s role in human health and disease. Through her pioneering studies, administrative leadership, and mentorship, she has cultivated a scientific ecosystem that will continue to grow. Moving forward, her leadership in major microbiome initiatives and consortia is poised to advance translational breakthroughs, from novel therapeutics for autoimmune disease to deeper insights into the human–microbe interface.

Conclusion

Dr. June Round’s career reflects the hallmarks of an exceptional researcher: rigorous scholarship, innovative vision, academic leadership, and transformative mentorship. Her pioneering contributions to microbiome and immune system research have reshaped fundamental scientific understanding while fostering future leaders in biomedical science. With her remarkable impact, both in the laboratory and across academic institutions, Dr. Round stands as an exemplary candidate for the Best Researcher Award.

Notable Publications

"Neonatal fungi promote lifelong metabolic health through macrophage-dependent β cell development

  • Author: JH Hill, R Bell, L Barrios, H Baird, K Ost, M Greenewood, JK Monts
  • Journal: Science
  • Year: 2025

"The gut microbiome is associated with disease‐free survival in stage I–III colorectal cancer patients

  • Author: DA Byrd, V Damerell, MF Gomez Morales, SR Hogue, T Lin, J Ose
  • Journal: International Journal of Cancer
  • Year: 2025

"A microRNA-regulated transcriptional state defines intratumoral CD8+ T cells that respond to immunotherapy

  • Author: WW Tang, B Battistone, KM Bauer, AM Weis, C Barba, MZH Fadlullah
  • Journal: Cell reports
  • Year: 2025

"Primary tumor microbiomes predict distant metastasis of colorectal cancer

  • Author: B Parajuli, V Midya, R Kiddle, N De Jager, S Eggers, D Spakowicz
  • Journal: Cell reports
  • Year: 2025

"Clec12a controls colitis by tempering inflammation and restricting expansion of specific commensals

  • Author: TR Chiaro, M Greenewood, KM Bauer, KS Ost, E Stephen-Victor
  • Journal: bioRxiv
  • Year: 2025

Young-Jin Kim | Structural Biology | Best Researcher Award

Dr. Young-Jin Kim | Structural Biology | Best Researcher Award

Pohang University of Science and Technology (POSTECH) | South Korea

Author Profiles

Scopus

Orcid ID

Early Academic Pursuits

Dr. Young-jin Kim’s academic journey began with a strong foundation in chemistry, completing a Bachelor of Science at Sungkyunkwan University, followed by a Master’s and Ph.D. in Chemistry at KAIST, Korea. His early research pursuits were rooted in structural studies related to immunity, where he contributed significantly to understanding how structural integrity impacts infectious disease progression. These formative years not only provided rigorous training in molecular and structural biology but also shaped his focus toward the intricate dynamics of protein structures.

Professional Endeavors

Following his doctoral studies, Dr. Kim pursued postdoctoral training at KAIST and later at the prestigious Rockefeller University, USA, under the mentorship of renowned structural biologists. These experiences expanded his expertise in advanced structural biology techniques such as X-ray crystallography and cryo-electron microscopy (Cryo-EM). Currently, as an Assistant Professor in the Department of Life Sciences at Pohang University of Science and Technology (POSTECH), Dr. Kim leads a research group investigating membrane protein structures and their physiological relevance.

Contributions and Research Focus

Dr. Kim’s research has centered on unraveling the mechanisms of ABC and SLC transporters—membrane proteins that play pivotal roles in drug resistance and cellular homeostasis. Notably, his groundbreaking discovery of the occluded conformation of human P-glycoprotein was a first in the field, advancing global understanding of drug efflux mechanisms. His ongoing projects include exploring the structural basis of multidrug resistance and elucidating plant circadian clock proteins through Cryo-EM and protein engineering approaches. Recent accomplishments include identifying the human OAT1 structure and its chloride-dependent drug transport mechanism, published in Structure (2025).

Impact and Influence

Dr. Kim’s work has had profound implications for both fundamental science and translational medicine. His structural studies on membrane transporters provide critical insights into drug design, particularly for overcoming multidrug resistance in cancer and infectious diseases. Beyond the laboratory, Dr. Kim has been an active contributor to the scientific community, serving as a committee member for the Women’s Life Science and Technology Forum and frequently delivering invited talks at prestigious conferences, workshops, and universities.

Academic Citations and Recognition

Dr. Kim’s contributions are reflected in his invited speaker roles across international symposia, including EASMB 2024, Soongsil University, Yeungnam University, and multiple workshops. His research achievements have been consistently recognized with awards, such as poster awards at NYKB and KOSUA meetings, a Hot Structure Poster Award by the Korean Society for Molecular and Cellular Biology, and presentation honors as early as his graduate years. These accolades underscore his long-standing excellence and sustained trajectory of impactful scholarship.

Legacy and Future Contributions

Looking ahead, Dr. Kim is poised to further shape the field of structural biology by pushing the frontiers of Cryo-EM to decode complex protein dynamics relevant to both human health and plant biology. His interdisciplinary approach—bridging structural biology, life sciences, and protein engineering—positions him to contribute not only to academic advancements but also to the development of innovative therapeutic strategies. His legacy will be defined by groundbreaking discoveries in membrane protein biology and by mentoring the next generation of structural biologists at POSTECH.

Conclusion

Dr. Young-jin Kim exemplifies the qualities of a visionary researcher whose academic rigor, innovative discoveries, and global contributions have positioned him as a leader in structural biology. His early academic excellence, groundbreaking research on membrane transporters, and dedication to advancing both science and mentorship make him an outstanding candidate for recognition such as the Best Researcher Award. His trajectory promises enduring influence in science and medicine, reinforcing his role as a pioneer in the field.

Notable Publications

"Cryo-EM structures of human OAT1 reveal drug binding and inhibition mechanisms

  • Author: Hyung-Min Jeon; Jisung Eun; Kelly H. Kim; Youngjin Kim
  • Journal: Structure
  • Year: 2025

"Structural Basis for Activation of the Heterodimeric GABAB Receptor

  • Author: Kim Y, Jeong E, Jeong JH, Kim Y, Cho Y
  • Journal: Journal of Molecular Biology
  • Year: 2020

"Structural basis of the fanconi anemia-associated mutations within the FANCA and FANCG complex

  • Author: Lee, SG. Kim, HS. Yang, J. Shin, J. Kim, Y. Kim, J. Scharer, O. D. Kim, Y. Yeo, JE. Kim, HM. Cho, Y
  • Journal: Nucleic Acids Research
  • Year: 2020

"The application of helix fusion methods in structural biology

  • Author: Na-Young Kwon; Youngjin Kim; Jie-Oh Lee
  • Journal: Current Opinion in Structural Biology
  • Year: 2020

"Attachment of flagellin enhances the immunostimulatory activity of a hemagglutinin-ferritin nano-cage

  • Author: Lee, EB, Jeon, HM. Kim, CU, Park, SM, Cho, G, Kim, HJ, Kim, Y, Kim, DJ, Kim, Y. S., Lee, H, Lee
  • Journal: Nanomedicine: Nanotechnology, Biology and Medicine
  • Year: 2024

Gregory Retallack | Graph Data Structures | Lifetime achievement Award

Dr. Gregory Retallack | Graph Data Structures | Lifetime achievement Award

University of Oregon | United States

Author Profiles

Scopus

Google Scholar

Early Academic Pursuits

Dr. Gregory Retallack’s academic foundation began in Sydney, Australia, where he attended Hurstville Public School, Epping Heights Public School, and The King’s School, Parramatta. His early curiosity for the natural world led him to pursue geology and biology at Macquarie University, earning a B.A. in 1973. His exceptional academic promise was evident when he graduated with First-Class Honours and the University Medal from the University of New England in 1974, followed by a Ph.D. in 1978. These formative years marked the beginning of a lifelong dedication to geology, paleobotany, and paleopedology.

Professional Endeavors

Dr. Retallack’s professional journey spans across continents and decades. His early teaching appointments included Northern Illinois University and Indiana University before he joined the University of Oregon in 1981, where he rose from Assistant Professor to full Professor and later served as Emeritus Professor. In addition to teaching and research, he directed the Condon Fossil Collection at the University of Oregon’s Museum of Natural and Cultural History, enriching public engagement with paleontology. His academic career reflects a blend of field research, mentorship, and scholarly leadership.

Contributions and Research Focus

A pioneering figure in paleopedology-the study of fossil soils-Dr. Retallack transformed understanding of ancient ecosystems, climate change, and evolutionary biology. His work on paleosols provided novel frameworks for interpreting paleoecological and geological records, particularly across critical intervals such as the Permian–Triassic boundary and the expansion of grasslands. His interdisciplinary contributions bridged geology, biology, and environmental science, making him a central figure in reconstructing Earth’s past environments and their role in shaping life.

Impact and Influence

Dr. Retallack’s influence extends well beyond his classrooms and field sites. His 331 publications have garnered more than 24,000 citations, with a remarkable h-index of 80—demonstrating both productivity and enduring scholarly impact. His recognition includes being elected Fellow of the Geological Society of America, Fellow of the American Association for the Advancement of Science, and numerous international lectureships. Awards such as the Antarctic Service Medal and the Earl Ingerson Award further underscore his scientific contributions to global research.

Academic Citations

Through his extensive research, Dr. Retallack’s findings are widely referenced in the scientific community. His work on fossil soils as indicators of ancient environments remains a cornerstone in geological and paleobotanical literature. The breadth of his citations-from paleoclimatology to evolutionary studies—illustrates the interdisciplinary resonance of his scholarship, placing him among the most highly regarded earth scientists of his era.

Legacy and Future Contributions

Even as an Emeritus Professor, Dr. Retallack continues to shape the scientific landscape. His role in curating fossil collections, developing educational materials, and authoring influential papers ensures that his contributions will guide future generations of geologists, paleontologists, and environmental scientists. His legacy lies not only in his groundbreaking research but also in the community of scholars he mentored and the public’s deeper appreciation of Earth’s deep history.

Conclusion

Dr. Gregory Retallack’s career exemplifies the qualities of a distinguished academic whose work redefined the study of ancient soils, ecosystems, and evolutionary change. His scholarship has left a lasting imprint on geology and paleontology, while his teaching and public engagement have broadened understanding of Earth’s dynamic history. With an enduring legacy and continued influence, Dr. Retallack stands as a fitting candidate for recognition through lifetime achievement honors.

Notable Publications

"Ediacaran-Cambrian paleosols of Nevada and California

  • Author: GJ Retallack
  • Journal: PLoS One
  • Year: 2025

"Soil modulation of Quaternary glacial-interglacial cycles

  • Author: GJ Retallack
  • Journal: Geoderma
  • Year: 2025

"Limits to Snowball Earth from Periglacial Silicate Paleosols in the Panamint Range, California

  • Author: GJ Retallack
  • Journal: AGU Fall Meeting Abstracts
  • Year: 2024

"Eocene (50-55 Ma) greenhouse climate recorded in nonmarine rocks of San Diego, CA, USA

  • Author: A Broz, D Pritchard-Peterson, S Schneider, D Spinola, G Retallack
  • Journal: EarthArXiv
  • Year: 2023

"Early Cretaceous Ice Ages from Weathering and Biomass of Migrating Angiosperms

  • Author: G Retallack
  • Journal: Geological Society of America Abstracts
  • Year: 2023

 

 

Venceslas Nguefoue Meli | Non-Linear Dynamics | Young Scientist Award

Dr. Venceslas Nguefoue Meli | Non-Linear Dynamics | Young Scientist Award

University of Dschang | Cameroon

Author Profile

Scopus

Early Academic Pursuits

Dr. Venceslas Nguefoue Meli’s academic journey began at the University of Dschang, Cameroon, where he demonstrated exceptional aptitude in physics from the undergraduate level, graduating cum laude with a Bachelor’s degree. His curiosity and determination led him to pursue a Master’s degree in Physics under the supervision of Prof. Patrick Louodop, focusing on the intriguing problem of recidivism in dynamical systems with applications to cancer modeling. This period of academic training laid the foundation for his Ph.D. in Physics, with a specialization in complex systems, under the joint guidance of Prof. Hilaire Bertrand Fotsin and Prof. Louodop. His doctoral thesis, Dynamics and Optimal Control of Mobiles and Interacting Systems, reflected a deep commitment to understanding intricate interactions within variable topology networks.

Professional Endeavors

Dr. Meli’s career is marked by a balance of academic teaching, research, and professional service. He has served as a tutorial assistant and lecturer in various institutions, including the University of Dschang, Université Polytechnique des Bamboutos Léonardo Da Vinci, and the Institut Universitaire et Stratégique de l’Estuaire. His teaching portfolio spans electronics, applied electronics in medical imaging, physics, electrostatics, and MATLAB programming, providing a strong interdisciplinary contribution to science education in Cameroon. Additionally, he has contributed to the academic development of students at both undergraduate and postgraduate levels, fostering critical thinking and problem-solving skills.

Contributions and Research Focus

Dr. Meli’s research lies at the intersection of complex systems, nonlinear dynamics, optimal control, and complex networks. His work particularly explores mobile systems in networks with variable topology, focusing on collective behaviors and their practical applications. By integrating concepts from hypergraph theory, he is extending his research scope toward emerging areas in network science. His technical expertise includes electronics circuit design, MATLAB, Python, and C programming, which enable him to approach problems from both theoretical and applied perspectives.

Impact and Influence

Through his academic presentations and conference participation, Dr. Meli has contributed to the global discourse in physics and complex systems. He has presented at internationally recognized events, including the São Paulo School of Advanced Science on Disordered Systems and the International Conference on High-Level Physics and Appropriate Solutions to Real-Life Problems. His research insights have influenced peers working on dynamics of mobile oscillators, network structures, and mutual interactions in systems, especially within the African scientific community.

Academic Citations and Scholarly Engagement

While emerging in his research career, Dr. Meli has actively engaged in scholarly exchanges through seminars, workshops, and conference presentations. His academic contributions are poised to gain further citations as his work on mobile oscillator networks and nonlinear dynamics continues to resonate with researchers in physics, applied mathematics, and systems science.

Legacy and Future Contributions

Looking ahead, Dr. Meli is positioned to advance research in hypergraph theory and its application to complex systems, with the potential to influence both theoretical models and technological innovations. His dedication to academic mentorship, interdisciplinary collaboration, and addressing real-world challenges ensures that his scientific contributions will continue to grow in relevance and impact.

Conclusion

Dr. Venceslas Nguefoue Meli embodies the qualities of a dedicated researcher, educator, and innovator in the field of complex systems and network science. His academic rigor, teaching excellence, and collaborative spirit have already marked him as a promising figure in the scientific community. With a trajectory that bridges theoretical insights and practical applications, he is well-positioned to make enduring contributions to physics and interdisciplinary research, aligning strongly with the ideals of awards recognizing young scientific talent.

Notable Publications

"Mobile oscillators in a mobile multi-layer network

  • Author: Venceslas Nguefoue , Steve J. Kongni, Thierry Njougouo, Patrick Louodop, Hubert Fotsin, Hilda A. Cerdeira
  • Journal: Chaos AIP
  • Year: 2025

"Chimera state in neural network with the PID coupling

  • Author: Mahamat Abdoulaye Adamdine, Venceslas Nguefoue, Thierry Njougouo, Patrick Louodop
  • Journal: Solitons and Fractals
  • Year: 2024

"Phase transitions on a multiplex of swarmalators

  • Author: Steve J. Kongni, Venceslas Nguefoue, Thierry Njougouo, Patrick Louodop, F. Fagundes Ferreira, Robert
    Tchitnga, Hilda A. Cerdeira
  • Journal: Physical Review E
  • Year: 2023

"Mobile oscillator network with amplification

  • Author: Venceslas Nguefoue, Thierry Njougouo, Steve Kongni, Patrick Louodop, Hilaire Fotsin
  • Journal: Solitons and Fractals
  • Year: 2023

"Network of mobile systems: mutual influence of oscillators and agents

  • Author: Venceslas Nguefoue, Thierry Njougouo, Patrick Louodop, Hilaire Fotsin, and Hilda A. Cerdeira
  • Journal: The European Physical Journal Special Topics
  • Year: 2021

 

 

 

Roger Gläser | Cascades in Networks | Best Researcher Award

Prof. Dr. Roger Gläser | Cascades in Networks | Best Researcher Award

Leipzig University | Germany

Author Profiles

Scopus

Orcid ID

Google Scholar

Early Academic Pursuits

Prof. Dr. Roger Gläser began his academic journey in Chemistry at the Universität Stuttgart, earning his Diploma degree in 1993 under the guidance of Prof. Dr.-Ing. J. Weitkamp. His passion for chemical technology was evident early in his academic career, culminating in a Doctorate in Chemical Technology in 1997, followed by a prestigious Habilitation in 2007, both from Universität Stuttgart. This solid foundation in chemical sciences laid the groundwork for his impactful contributions to heterogeneous catalysis and porous material research.

Professional Endeavors

Since 2007, Prof. Gläser has served as a Full Professor of Chemical Technology and Executive Director of the Institute of Chemical Technology at Leipzig University, Germany. His career is distinguished not only by academic leadership but also by his extensive involvement in national and international scientific governance. From Vice Rector for Talent Development at Universität Leipzig (2022–2025) to President of the International Zeolite Association (IZA) starting July 2025, his influence spans across administrative, educational, and scientific domains. He has held several prominent roles, including Chair of the German Zeolite Association, Chair of the German Catalysis Society (GeCatS) Commission, and Board Member of FEZA, displaying his commitment to advancing scientific networks and policy.

Contributions and Research Focus

Prof. Gläser’s research centers on heterogeneous catalysis by porous materials, focusing on the synthesis and characterization of sorbents and catalysts with hierarchical porosity. His work integrates supported metals, metal oxides, enzymes, and photocatalysts, with applications in thermochemical energy storage, renewable resource utilization, diesel off-gas treatment, and photocatalysis. He also explores diffusion mechanisms in catalytic systems and promotes the use of alternative solvent systems in catalytic reactions. With an eye on sustainability, he has significantly contributed to converting biomass and CO₂ into useful fuels and chemicals, aligning his work with global climate and energy challenges.

Impact and Influence

Prof. Gläser's impact is reflected in his supervision of over 52 doctoral theses, nurturing a new generation of chemists and engineers. His innovative mindset is demonstrated through six patents covering novel catalytic processes and porous materials. These include processes for ketone synthesis, alkylbenzene oxidation, and porous metal oxide materials, marking significant strides in industrial chemistry and green catalysis. His work bridges fundamental science and applied technology, often with interdisciplinary collaborations, reinforcing his reputation as a thought leader in catalytic science.

Academic Sites and Leadership

As a speaker of Leipzig University’s Research Profile Area “Sustainable Systems and Biodiversity”, Prof. Gläser has played a pivotal role in positioning the university as a center of excellence. He also served as Chairman of the Board of the Leibniz-Institute for Surface Modification (IOM) and Director of the Graduate Center of Mathematics/Informatics and Natural Sciences, contributing to the development of academic ecosystems. Furthermore, his appointment to the DFG Review Board for Chemical Technology and the Ombuds Committee for Research Integrity reflects his dedication to maintaining high ethical and scientific standards.

Honors and Recognitions

Prof. Gläser’s contributions have been acknowledged with prestigious awards, including the Jochen-Block-Award (2002) from DECHEMA's Catalysis Section and the Young Faculty Award (2006) from DECHEMA's Society of Chemical Engineering and Biotechnology. These accolades underscore his excellence in chemical engineering research and mentorship.

Legacy and Future Contributions

Prof. Gläser’s legacy is built on a foundation of scientific excellence, collaborative leadership, and sustainability-focused innovation. His upcoming presidency of the International Zeolite Association (IZA) from 2025 positions him to influence global research agendas in porous materials and catalysis. His efforts continue to inspire advancements in green chemistry, energy efficiency, and environmental remediation, ensuring that his work remains relevant and impactful in tackling future technological and environmental challenges.

Conclusion

Prof. Dr. Roger Gläser epitomizes the union of academic rigor, scientific innovation, and institutional leadership. With over two decades of distinguished service to the field of chemical technology and catalysis, his career is a beacon of research excellence and mentorship. As he continues to shape the future of sustainable chemical processes and international scientific collaboration, his work will undoubtedly leave a lasting imprint on both academia and industry worldwide.

Notable Publications

"Adsorption, capture, and selectivity: how much do the framework cations influence the adsorption in LTA zeolites?

  • Author: A da Silva, JMS Duarte, MIS de Mello, T Beger, J Titus-Emse, R Gläser
  • Journal: Microporous and Mesoporous Materials
  • Year: 2025

"Diffusion in Nanoporous Materials in the Focus of an IUPAC Initiative: The Innovative Power of “Microscopic” Measuring Techniques

  • Author: M Jabłońska, A Osorio Hernández, J Dornseiffer, J Grams, A Guo
  • Journal: Catalysts
  • Year: 2025

"Influence of the secondary pore system on methyl oleate epoxidation using TS-1 with hierarchical pore system

  • Author: AO Hernández, M Goepel, D Poppitz, R Gläser
  • Journal: Materials Chemistry and Physics
  • Year: 2025

"Microkinetic Modelling of the Heterogeneously Catalyzed Hydrogenation of Glycolic Acid over Ru/C

  • Author: FM Harth, A Kojčinović, B Likozar, R Gläser, M Huš, M Goepel, M Grilc
  • Journal: ChemCatChem
  • Year: 2025

"TS-1/spherical activated carbon composites in the epoxidation of methyl oleate

  • Author: AO Hernández, M Goepel, D Poppitz, M Dvoyashkin, R Gläser
  • Journal: RSC advances
  • Year: 2024