Assoc. Prof. Dr. Muhammed Yasin Durgun | Renewable Materials | Best Academic Researcher Award
Assoc. Prof. Dr. Muhammed Yasin Durgun at Bartın University, Turkey
Associate Professor Muhammed Yasin DURGUN is a distinguished civil engineering researcher at Bartın University, specializing in concrete technology, cementitious materials, and sustainable construction. With a strong focus on innovative materials, his research explores the use of industrial wastes, nano silica, and alkali-activated binders to improve concrete durability, rheology, and high-temperature resistance. He has led and contributed to numerous nationally funded projects, demonstrating leadership as coordinator and academic advisor. Dr. Durgun has published over 20 SCI-indexed articles, multiple book chapters, and presented at international conferences, reflecting his significant scholarly impact. He actively mentors graduate and doctoral students and has reviewed extensively for SCI journals, showcasing his dedication to advancing academic quality. His work bridges theoretical research and practical applications, with consultancy roles supporting industry innovations. Dr. Durgun’s commitment to sustainable engineering and innovative material development establishes him as a leading figure in civil engineering research.
📗Publication Profile
📚Summary of Suitability for the Best Academic Researcher Award
Muhammed Yasin DURGUN stands out as a highly qualified candidate for the Best Academic Researcher Award, with impactful contributions to sustainable concrete technology and civil engineering materials. He has led over 10 innovative research projects, published 21 SCI-indexed articles, and authored six book chapters. His mentorship of MSc and PhD students, strong academic leadership, and active engagement in peer review reflect both scholarly excellence and dedication to advancing environmentally responsible construction solutions.
🎓Academic Background
Associate Professor Muhammed Yasin DURGUN is a leading civil engineering expert specializing in concrete technology and sustainable construction materials. He has conducted extensive research on innovative cementitious materials, including the use of industrial waste products and nano silica to enhance the durability and performance of concrete. Throughout his academic career at Bartın University, he has been involved in numerous research projects funded nationally, often serving as coordinator or academic advisor. Dr. Durgun has published over 20 SCI-indexed journal articles and contributed to several book chapters, demonstrating his strong scholarly presence. In addition to his research, he actively supervises graduate and doctoral students and contributes to the academic community through peer review. His work not only advances theoretical knowledge but also has practical applications in improving concrete sustainability and performance. His dedication and innovative approach have made him a prominent figure in civil engineering research. 🔬
🏗️Professional Experience
Associate Professor Muhammed Yasin DURGUN has a robust professional background in civil engineering, focusing on concrete technology, sustainable construction materials, and cementitious innovations. At Bartın University, he has led and contributed to numerous national research projects, often serving as coordinator and academic advisor. His expertise includes investigating the effects of industrial by-products and nano materials on the properties and durability of concrete and mortars. Dr. Durgun has published over 20 SCI-indexed articles and authored multiple book chapters, reflecting his strong research output and influence. Beyond research, he actively mentors graduate and doctoral students, helping develop the next generation of engineers and researchers. Additionally, he has provided consultancy services for industry projects, bridging the gap between academic research and practical applications. His dedication to advancing sustainable materials and improving construction technologies positions him as a respected leader in his field. 🏗️
🏅Awards and Honors
Associate Professor Muhammed Yasin DURGUN has been recognized for his significant contributions to civil engineering and concrete technology through various awards and honors. His innovative research on sustainable construction materials and cementitious composites has earned him national acclaim and research grants. Throughout his career, he has successfully led and participated in multiple funded projects, highlighting his expertise and leadership in the field. Dr. Durgun’s scholarly excellence is reflected in his numerous publications in high-impact journals and chapters in academic books, which have been widely cited by peers. His dedication to advancing the durability and sustainability of concrete materials has positioned him as a respected figure in engineering research communities. In addition to academic recognitions, he has served as an expert reviewer for SCI-indexed journals, underscoring his role in maintaining high scientific standards. His achievements continue to inspire students and colleagues alike. 🏆
🔬Research Focus
Associate Professor Muhammed Yasin DURGUN’s research primarily centers on civil engineering materials, with a special emphasis on concrete technology and sustainable construction. His work explores the development and enhancement of cementitious materials, including self-consolidating concretes, geopolymers, and alkali-activated binders. A significant part of his research investigates the utilization of industrial by-products and waste materials such as pumice, blast furnace slag, and colemanite to improve concrete’s durability, rheological properties, and resistance to high temperatures. Dr. Durgun also focuses on the microstructural behavior of cement-free mortars and fiber-reinforced composites, aiming to optimize their mechanical and environmental performance. His interdisciplinary approach bridges fundamental material science with practical applications, addressing challenges related to sustainability and infrastructure longevity. This research contributes to the advancement of eco-friendly building materials and innovative construction techniques, supporting both academic progress and industry needs. 🔬
📖Publication Top Notes
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High temperature resistance of concretes with GGBFS, waste glass powder, and colemanite ore wastes after different cooling conditions
Year: 2019 | Cited by: 73 -
Investigation of durability properties of concrete pipes incorporating blast furnace slag and ground basaltic pumice as fine aggregates
Year: 2012 | Cited by: 72 -
Rheological and fresh properties of reduced fine content self-compacting concretes produced with different particle sizes of nano SiO2
Year: 2017 | Cited by: 57 -
A Taguchi approach for investigating the engineering properties of concretes incorporating barite, colemanite, basaltic pumice and ground blast furnace slag
Year: 2017 | Cited by: 52 -
Effect of high temperature on polypropylene fiber-reinforced mortars containing colemanite wastes
Year: 2022 | Cited by: 50 -
Strength, elastic and microstructural properties of SCCs’ with colloidal nano silica addition
Year: 2018 | Cited by: 42 -
Corrosion of basaltic pumice, colemanite, barite and blast furnace slag coated rebars in concretes
Year: 2012 | Cited by: 42 -
Properties of high-calcium fly ash-based geopolymer concretes improved with high-silica sources
Year: 2020 | Cited by: 38 -
Modeling of thermal conductivity of concrete with vermiculite by using artificial neural networks approaches
Year: 2013 | Cited by: 36 -
Effect of wetting-drying cycles on gypsum plasters containing ground basaltic pumice and polypropylene fibers
Year: 2020 | Cited by: 34