Çınar Öncelمشاهده پروفایل
دانشیار
Çınar Öncel is an Associate Professor in the Department of Metallurgy and Materials Engineering at Muğla Sıtkı Koçman University's Faculty of Engineering. With a strong academic background including a PhD from Sabancı University, he has established himself as an active researcher in materials science with particular expertise in ceramic materials, solid oxide fuel cells, and nanomaterials. His research focuses on developing advanced materials for energy applications, with numerous publications and research projects spanning over two decades. Dr. Öncel's research interests primarily center around ceramic materials engineering, with specialization in solid oxide fuel cell components, nanomaterial synthesis, and advanced ceramics processing. His work bridges fundamental materials science with practical applications in energy conversion and storage technologies. He has made significant contributions to understanding interface phenomena in fuel cell systems, developing novel synthesis methods for nanomaterials, and creating cost-effective manufacturing techniques for energy-related applications. His publication record shows consistent research output with recent focus areas including lithium extraction from geothermal sources, characterization of piezoelectric composites, and innovative approaches to solar collector technology. Earlier work prominently featured solid oxide fuel cell materials, boron nitride nanotubes, and ceramic processing techniques. The research demonstrates a clear trajectory from fundamental materials synthesis to application-oriented engineering solutions. Dr. Gürsel Sönmez Araştırma Ödülü (2009) Patent: BİR KATALİZÖR VE BU KATALİZÖRÜN KULLANILMASI İLE ELDE EDİLEN BİR BOR NİTRÜR NANOTÜP VE SÖZ KONUSU NANOTÜPÜ ÜRETİM YÖNTEMİ (2019) Dr. Öncel has successfully led multiple significant research projects, including TÜBİTAK-funded initiatives on solid oxide fuel cells, lithium-ion batteries, and vacuum tube solar collectors. His most recent projects (2020-2024) focus on innovative strategies for bioactive and antibacterial magnesium-based implants through EU collaboration, as well as domestically sourced electrode materials for various battery technologies. His project leadership demonstrates strong capability in securing research funding and managing complex technical research initiatives. His teaching responsibilities include undergraduate and graduate courses in Glass and Glass-Ceramics, Powder Metallurgy, Ceramic Materials, and Materials Research, indicating active involvement in both fundamental and applied aspects of materials engineering education.









