Publications of Youngmi Yi

Journal Article (8)

2018
Journal Article
Streibel, Verena, Michael Hävecker, Youngmi Yi, Juan Velasco Vélez, Katarzyna Skorupska, Eugen Stotz, Axel Knop-Gericke, Robert Schlögl and Rosa Arrigo: In Situ Electrochemical Cells to Study the Oxygen Evolution Reaction by Near Ambient Pressure X-ray Photoelectron Spectroscopy.
2016
Journal Article
Klyushin, Alexander, Rosa Arrigo, Youngmi Yi, Zailai Xie, Michael Hävecker, Andrey V. Bukhtiyarov, Igor P. Prosvirin, Valerii I. Bukhtiyarov, Axel Knop-Gericke and Robert Schlögl: Are Au Nanoparticles on Oxygen-Free Supports Catalytically Active?
2015
Journal Article
Arrigo, Rosa, Manfred Erwin Schuster, Zailai Xie, Youngmi Yi, Gregor Wowsnick, Lili Sun, Klaus Hermann, Matthias Friedrich, Patrick Kast, Michael Hävecker, Axel Knop-Gericke and Robert Schlögl: Nature of the N-Pd Interaction in Nitrogen-Doped Carbon Nanotube Catalysts.
Journal Article
Yi, Youngmi, Julian Tornow, Elena Willinger, Marc Georg Willinger, Chinmoy Ranjan and Robert Schlögl: Electrochemical Degradation of Multiwall Carbon Nanotubes at High Anodic Potential for Oxygen Evolution in Acidic Media.
Journal Article
Yi, Youngmi, Julian Tornow, Elena Willinger, Marc Georg Willinger, Chinmoy Ranjan and Robert Schlögl: Inside Back Cover: Electrochemical Degradation of Multiwall Carbon Nanotubes at High Anodic Potential for Oxygen Evolution in Acidic Media.
2013
Journal Article
Ocon, Joey D., Trinh Ngoc Tuan, Youngmi Yi, Rizalinda L. de Leon, Jae Kwang Lee and Jaeyoung Lee: Ultrafast and stable hydrogen generation from sodium borohydride in methanol and water over Fe–B nanoparticles.
2012
Journal Article
Lee, Jaeyoung, HyungKuk Ju, Youngmi Yi, Jongmin Lee, Sunghyun Uhm, Jae Kwang Lee and Hye Jin Lee: High-Density Nanoporous Structures for Enhanced Electrocatalysis.
2011
Journal Article
Lee, Jae Kwang, Hyang-hwa Ann, Youngmi Yi, Kyu Wan Lee, Sunghyun Uhm and Jaeyoung Lee: A stable Ni–B catalyst in hydrogen generation via NaBH4 hydrolysis.

Thesis - PhD (1)

2014
Thesis - PhD
Yi, Youngmi: Study on the degradation of carbon materials for electrocatalytic applications.
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