- 전유권 Jeon Yukwon
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- Campus : MIRAE Campus
- Department : Division of Environmental Energy Engineering
- E-mail : YKJEON@YONSEI.AC.KR
- Tel : 033)760-2466
- Office : #306 Baekwoon Building
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Education
• Ph.D. (Combined course with M.Sc.): Mar. 2009 ~ Feb. 2015.
Yonsei University, Department of Chemical and Biomolecular Engineering, Seoul, Republic of Korea.
Dissertation: “Design of Perovskite Catalysts for H2 Production from Heavy-Hydrocarbon Source”
Supervisor: Prof. Yong-Gun Shul
• B.A. : Mar. 2003 ~ Aug. 2008.
Chungnam National University, Department of Chemical Engineering, Daejeon, Republic of Korea.
Thesis: “The evaluation of the efficiency for VOC removal by using the activated carbon bed”
Yonsei University, Department of Chemical and Biomolecular Engineering, Seoul, Republic of Korea.
Dissertation: “Design of Perovskite Catalysts for H2 Production from Heavy-Hydrocarbon Source”
Supervisor: Prof. Yong-Gun Shul
• B.A. : Mar. 2003 ~ Aug. 2008.
Chungnam National University, Department of Chemical Engineering, Daejeon, Republic of Korea.
Thesis: “The evaluation of the efficiency for VOC removal by using the activated carbon bed”
Experience
• Assistant Professor, Sep. 2019 ~ Current.
Yonsei University, Department of Environmental Engineering, Republic of Korea.
• Research Fellow, Sep. 2016 ~ Aug. 2019.
University of St Andrews, School of Chemistry, United Kingdom. (Advisor: Prof. John T.S. Irvine)
Subject: ‘Noble metal exsolutions from various perovskite materials for catalytic applications’ (with Johnson Matthey)
Yonsei University, Department of Environmental Engineering, Republic of Korea.
• Research Fellow, Sep. 2016 ~ Aug. 2019.
University of St Andrews, School of Chemistry, United Kingdom. (Advisor: Prof. John T.S. Irvine)
Subject: ‘Noble metal exsolutions from various perovskite materials for catalytic applications’ (with Johnson Matthey)
Research Interest
• Design, synthesis and characterization of inorganic materials such as metals, metal oxides, perovskites, heteropolyacids, carbons and zeolites, etc.
• Dimension and morphology control of materials to nanostructured, porous, fibrous and even patterned, etc.
• Application to heterogeneous catalytic/electrochemical reaction and petrochemical process.
• Renewable energy systems such as hydrogen processor (reforming) and fuel cells (PEMFC, SOFC), electrolysis and metal-air battery, etc.
• Next-generation convergence systems for energy and environment applications.
• Dimension and morphology control of materials to nanostructured, porous, fibrous and even patterned, etc.
• Application to heterogeneous catalytic/electrochemical reaction and petrochemical process.
• Renewable energy systems such as hydrogen processor (reforming) and fuel cells (PEMFC, SOFC), electrolysis and metal-air battery, etc.
• Next-generation convergence systems for energy and environment applications.