Prof. Dr. Mehmet Bulent Durmusoglu – Industrial Engineering – Best Researcher Award 

Prof. Dr. Mehmet Bulent Durmusoglu - Industrial Engineering - Best Researcher Award 

Istanbul Technical University - Turkey 

Author Profile 

GOOGLE SCHOLAR 

🎓 Early academic pursuits

Mehmet Bulent Durmusoglu began his academic journey at istanbul technical university, where he also earned his ph.d. in industrial engineering. from the outset, he displayed a keen interest in manufacturing systems, with a focus on optimizing production and service environments. his early studies laid a solid foundation in operations research, system design, and industrial optimization, inspiring his lifelong pursuit of creating more efficient and sustainable production frameworks. his academic curiosity and dedication quickly positioned him among the promising scholars in industrial engineering in turkey.

🚀 Professional endeavors

As an emeritus professor at istanbul technical university, durmusoglu has had a distinguished academic career marked by innovation, mentorship, and practical application. his teaching and research have been deeply rooted in the design and implementation of cellular and lean manufacturing systems, with an extension into service systems. over the years, he has authored 39 journal articles and contributed to 7 book chapters, firmly establishing his academic footprint. beyond academia, his engagement in over 45 consultancy and industrial projects has proven his ability to translate theoretical insights into real-world operational improvements.

🧐 Contributions and research focus

Durmusoglu's research focus centers on lean transformation and the integration of lean principles into both manufacturing and service sectors. his seminal work, "lean transformation journey: is transformation possible or just a dream?" captures the essence of his philosophy and practical experience in this field. through his projects, he has transformed approximately 25% of the Industrial Engineering companies he consulted into lean operations, proving the tangible value of his methodologies. his contributions have not only enriched academic discourse but have also significantly advanced lean practice and strategy implementation in diverse organizational contexts.

🏆 Accolades and recognition

His research has earned widespread recognition, reflected in an impressive h-index of 21 and an i-10 index of 40. his impact is further underscored by his numerous industrial consultancy projects, which have driven notable performance improvements across sectors. as the author of a leading book on lean transformation published by optimist publishing group, he has Industrial Engineering influenced both academic circles and business practitioners. his work continues to be cited by scholars and applied by professionals aiming to create agile, efficient, and customer-focused systems.

👨‍💼 Impact and influence

Durmusoglu's influence spans both the academic and industrial spheres. his guidance in 24 lean transformation projects and 21 performance enhancement initiatives has had a measurable Industrial Engineering impact on organizational efficiency. many companies have credited his strategic interventions for significant cost savings, process improvements, and workforce empowerment. he has served as a bridge between theory and practice, bringing lean philosophies into real-world settings and inspiring both students and industry professionals with his applied knowledge and transformative vision.

🌍 Legacy and future contributions

As a thought leader and educator, durmusoglu’s legacy lies in his unwavering commitment to lean principles and continuous improvement. even as an emeritus professor, he remains engaged in the field, mentoring future leaders and contributing to ongoing research. his future vision includes expanding the scope of lean thinking into emerging areas such as digital transformation and sustainable operations. his journey stands as a testament to how academic excellence can be harnessed to drive real-world change and build a culture of innovation, resilience, and operational excellence.

Notable Publications 

  • Title: Fuzzy multi-attribute equipment selection based on information axiom
    Author(s): O. Kulak, M.B. Durmuşoğlu, C. Kahraman
    Journal: Journal of Materials Processing Technology

  • Title: A complete cellular manufacturing system design methodology based on axiomatic design principles
    Author(s): O. Kulak, M.B. Durmusoglu, S. Tufekci
    Journal: Computers & Industrial Engineering

  • Title: Classification and modeling for in-plant milk-run distribution systems
    Author(s): H.S. Kilic, M.B. Durmusoglu, M. Baskak
    Journal: The International Journal of Advanced Manufacturing Technology

  • Title: A simulation-based methodology for the analysis of the effect of lean tools on energy efficiency: An application in power distribution industry
    Author(s): S. Baysan, O. Kabadurmus, E. Cevikcan, S.I. Satoglu, M.B. Durmusoglu
    Journal: Journal of Cleaner Production

  • Title: Advances in assembly line parts feeding policies: a literature review
    Author(s): H.S. Kilic, M.B. Durmusoglu
    Journal: Assembly Automation

Prof. Dr. Caroline Sunyong lee – Gas sensor  – Best Researcher Award  

Prof. Dr. Caroline Sunyong lee - Gas sensor  - Best Researcher Award  

Hanyang University -  South Korea

Author Profile 

SCOPUS 

🎓 Early academic pursuits

Caroline Sunyong lee's academic journey is rooted in her deep passion for materials science. she pursued her graduate studies at the university of california, berkeley, where she worked as a research assistant in the ceramic processing laboratory. her doctoral research focused on developing processes to join dissimilar ceramic materials, specifically silicon nitride and alumina, using sialon as an interlayer. this work significantly improved high-temperature performance and was supported by extensive characterization using transmission electron microscopy (tem). her academic excellence led her to a postdoctoral fellowship at gyeongsang national university, further refining her expertise in engineering research.

💼 Professional endeavors

Dr. Lee’s professional career is marked by a rich blend of industrial and academic experiences. she began her career at applied materials, where she worked on dielectric etching processes and advanced semiconductor fabrication techniques. at intel corporation, she contributed to the advanced interconnected technology development division, optimizing gold sputter equipment for improved manufacturing yields. later, she joined lg electronics institute of technology as a chief research engineer, focusing on nano-data storage systems, cantilever fabrication, and media development for low-power scanning probe microscopy (spm)-based data storage. since 2006, she has been a professor at hanyang university, where she has been instrumental in advancing research in functionally graded materials, mems technology, and electronic materials.

🔬 Contributions and research focus

Dr. Lee’s research spans diverse domains within materials science, particularly in nanomaterials and electronic devices. she has played a pivotal role in developing supersonic micronozzles using deep reactive ion etching (drie), nano-particle deposition systems (npds) for ceramic and metal powder coatings, and self-assembled monolayer (sam) coatings for nano-sized copper Gas sensor powders. her work also extends to electrochromic windows, gas sensors, dye-sensitized solar cells (dssc), and photocatalysts, which have significant applications in energy and environmental technologies. her contributions have led to enhanced material properties, improved fabrication techniques, and innovations in sustainable energy solutions.

🏆 Accolades and recognition

Dr. Lee's outstanding contributions to materials science and engineering have earned her widespread recognition. she serves as the director of administration for the korean institute of metals and materials, a testament to her leadership in the field. her role as director of the ieep in tanzania showcases her commitment to global education and research collaboration. in academia, Gas sensor she has mentored and graduated 32 master’s students and four ph.d. students, further strengthening the scientific community with her expertise and guidance.

🌍 Impact and influence

Beyond her research contributions, dr. lee has significantly impacted the academic landscape through teaching and mentorship. she has designed and delivered courses in materials science, Gas sensor materials electrochemistry, composite materials, semiconductor devices, micro and nano fabrication, and polymer materials. her ability to translate complex scientific concepts into practical applications has influenced countless students and researchers. her work in mems and nano-fabrication technologies continues to shape the future of electronic and energy materials.

🔄 Legacy and future contributions

Dr. Lee’s legacy in materials science and chemical engineering is defined by her relentless pursuit of innovation and education. as a leader in advanced material research, she continues to explore novel approaches in electronic materials, sustainable energy applications, and multifunctional devices. her work at hanyang university and her contributions to international collaborations set a strong foundation for future advancements. through her mentorship, research, and leadership, she remains an inspiring figure in the field of nanotechnology and materials engineering, shaping the next generation of scientists and engineers.

Notable Publications 

  1. Title: Performance enhancement of rechargeable zinc-air battery through synergistic ex-solution of multi-component Pt/CoWO₄₋ₓ catalysts
    Author(s): Changho Lee, Chang-kyu Hwang, Jung-won An, Sunyong Caroline Lee, Ki Ro Yoon
    Journal: Applied Catalysis B: Environmental, 2024

  2. Title: The superior mineralization potential of a graphitic carbon nitride/titanium dioxide composite and its application in the construction of a portable photocatalytic air purification system against gaseous formaldehyde
    Author(s): Myeonseong Cho, Sherif A. Younis, Sunyong Caroline Lee, Xiaowei Li, Ki Hyun Kim
    Journal: Journal of Materials Chemistry A, 2024

  3. Title: Fabrication of Fe-4.5 wt% Si core-shell soft magnetic composite (SMC) via milling assisted pressureless sintering method for high-frequency application
    Author(s): Taehyeob Im, Kwiyoung Lee, Jonghyeok Ahn, Jongryoul Kim, Sunyong Caroline Lee
    Journal: Journal of Materials Research and Technology, 2024

  4. Title: Construction of highly porous Z-scheme CuSe₂/ZnSe heterostructure to achieve efficient CO₂ photoreduction activity
    Author(s): Hazina Charles, Plassidius J. Chengula, Heungseok Oh, Sunyong Caroline Lee
    Journal: Surfaces and Interfaces, 2024

  5. Title: Introduction to subpressure-driven soft deformation method for removing inherent voids in green components manufactured by material extrusion
    Author(s): Taehyeob Im, Heungseok Oh, Byeonghwa Goh, Joonmyung C. Choi, Sunyong Caroline Lee
    Journal: Heliyon, 2024

Mr. Wenhe Wang – Oil and gas chemical safety – Best Researcher Award

Mr. Wenhe Wang - Oil and gas chemical safety - Best Researcher Award

Chongqing University of Science and Technology,Southwest Petroleum University - China

Professional Profile

SCOPUS

Early Academic Pursuits

Wenhe Wang's academic journey has been marked by a strong commitment to safety in oil and gas processes. As a visiting scholar at Oklahoma State University in the USA, he honed his expertise in risk prevention and control technology, specifically focusing on fire and explosion accidents in the oil and gas chemical process. His educational background has provided a solid foundation for his subsequent professional and research endeavors.

Professional Endeavors

Wenhe Wang currently serves as a Professor and doctoral supervisor at Chongqing University of Science and Technology. He is also affiliated with Southwest Petroleum University. His professional roles include being a China production safety expert, a National Science and Technology Ministry expert, Oil and gas chemical safety a National Natural Science Foundation communication review expert, a National registered safety engineer, and a National security evaluator. Wang's leadership extends to being a Chongqing Academic technology leader, reflecting his influence and authority in his field.

Contributions and Research Focus

Wang's research primarily revolves around the safety of oil and gas chemical processes and equipment. He has completed 25 research projects and published 60 articles in renowned journals indexed in SCI and Scopus. His research includes a focus on the dynamic characteristics and explosion suppression mechanisms of hydrogen-doped natural gas in integrated pipe galleries. Additionally, Oil and gas chemical safety he has 20 patents published or under process, highlighting his innovative contributions to safety technology. Wang's work also encompasses intelligent prevention and control technologies for urban underground pipe network space safety risks.

Accolades and Recognition

Throughout his career, Wenhe Wang has received numerous accolades for his contributions to safety science. He is a young editorial member of both the "China Safety Science Journal" and the "Safety and Environment Journal." His collaborative efforts have been instrumental in over 20 significant research projects, including national key research and development programs. Wang's memberships in professional organizations further cement his status as a leading expert in his field. He is the Vice President and Secretary General of the Chongqing Safety Science and Engineering Society and the Vice President of the Chongqing Fire Protection Association.

Impact and Influence

Wenhe Wang's research has significantly impacted the safety of oil and gas energy transmission pipelines. By revealing the corrosion failure mechanisms and establishing risk assessment and life prediction models, he has advanced the field of pipeline safety. His development of technology and equipment for the intelligent management of urban underground pipe network security risks has provided crucial support for the construction of intelligent oil and gas pipe networks. Wang's work has driven progress in safety prevention and control technologies, Oil and gas chemical safety influencing both academic research and practical applications.

Legacy and Future Contributions

Looking forward, Wenhe Wang is poised to continue his influential work in safety science. His commitment to improving safety in the oil and gas industry and urban infrastructure highlights his dedication to public safety and technological advancement. Wang's ongoing research and development efforts are expected to lead to further innovations in intelligent safety management systems. His legacy will likely include significant advancements in risk prevention and control technologies, contributing to safer industrial and urban environments.

NOTABLE PUBLICATIONS 

Prediction of external corrosion rate for buried oil and gas pipelines: A novel deep learning method with DNN and attention mechanism   2024

Interpretable Feedforward Neural Network and XGBoost-Based Algorithms to Predict CO2 Solubility in Ionic Liquids  2024

Determination of CF3CHFCF3 suppression effects on premixed hydrogen-methane deflagration via experiment and simulation  2024(2)

Comprehensive risk assessment for the esterification processes based on Dempster-Shafer evidence theory and cloud model  2024