Follow
Xiaomei Yu
Title
Cited by
Cited by
Year
Highly Enhanced Photoactivity of Anatase TiO2 Nanocrystals by Controlled Hydrogenation-Induced Surface Defects
X Yu, B Kim, YK Kim
ACS Catalysis 3 (11), 2479-2486, 2013
3592013
Dominant Influence of the Surface on the Photoactivity of Shape-Controlled Anatase TiO2 Nanocrystals
X Yu, B Jeon, YK Kim
ACS Catalysis 5 (6), 3316-3322, 2015
382015
Observation of temperature-dependent kinetics for catalytic CO oxidation over TiO2-supported Pt catalysts
X Yu, Y Wang, A Kim, YK Kim
Chemical Physics Letters 685, 282-287, 2017
232017
Facile Formation of Nanodisk‐Shaped Orthorhombic SnS Layers from SnS2 Particles for Photoelectrocatalytic Hydrogen Production
M Patel, X Yu, YK Kim, J Kim
ChemNanoMat 3 (8), 591-600, 2017
222017
A study on selective surface nitridation of TiO2 nanocrystals in the afterglows of N2 and N2-O2 microwave plasmas
B Jeon, A Kim, A Ricard, JP Sarrette, X Yu, YK Kim
Applied Surface Science 432, 163-169, 2018
62018
Engineering defects and photocatalytic activity of TiO 2 nanoparticles by thermal treatments in NH 3 and subsequent surface chemical etchings
X Yu, Y Wang, YK Kim
Physical Chemistry Chemical Physics 19 (35), 24049-24058, 2017
62017
Wafer Scale Formation of Nanodisk-Shaped SnS Layers for Photoelectrocatalytic Hydrogen Production
M Patel, X Yu, YK Kim, J Kim
한국진공학회 학술발표회초록집, 285-285, 2017
2017
Back Cover: Facile Formation of Nanodisk‐Shaped Orthorhombic SnS Layers from SnS2 Particles for Photoelectrocatalytic Hydrogen Production (ChemNanoMat 8 …
M Patel, X Yu, YK Kim, J Kim
ChemNanoMat 3 (8), 601-601, 2017
2017
Impressive Photocatalytic Performance of 2D Orthorhombic SnS/FTO Thin Layers in Photoelectrocatalytic Hydrogen Production
X Yu, Y Wang, M Patel, J Kim, YK Kim
한국에너지기후변화학회 학술대회, 306-306, 2017
2017
Effect of defects on photocatalytic activity of chemically modified anatase TiO2 nanocrystals with H-2 and NH3
X Yu, B Kim, YK Kim
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 247, 2014
2014
The system can't perform the operation now. Try again later.
Articles 1–10