화학공학소재연구정보센터
검색결과 : 79건
No. Article
1 The study of structural, morphological and optical properties of (Al, Ga)-doped ZnO: DFT and experimental approaches
Sikam P, Moontragoon P, Ikonic Z, Kaewmaraya T, Thongbai P
Applied Surface Science, 480, 621, 2019
2 On the mechanism of alkyne hydrogenation catalyzed by Ga-doped ceria
Zhou SL, Gao LY, Wei FF, Lin S, Guo H
Journal of Catalysis, 375, 410, 2019
3 Correlation between electrical resistivity and optical transmittance of Mg- and Ga-doped ZnO window layers in NIR-IR region and its effect on current density of kesterite solar cells
Kim J, Jang J, Lee DS, Moon JH, Kim HJ, Kim JH
Solar Energy, 186, 46, 2019
4 Ga-doped ZnO nanorod scaffold for high-performance, hole-transport-layer-free, self-powered CH3NH3PbI3 perovskite photodetectors
Zhou H, Yang L, Gui PB, Grice CR, Song ZH, Wang H, Fang GJ
Solar Energy Materials and Solar Cells, 193, 246, 2019
5 Influence of crystallographic polarity on the opto-electrical properties of polycrystalline ZnO thin films deposited by magnetron sputtering
Makino H, Shimizu H
Applied Surface Science, 439, 839, 2018
6 Large enhancement of X-ray excited luminescence in Ga-doped ZnO nanorod arrays by hydrogen annealing
Li QL, Liu XLL, Gu M, Li FR, Zhang JN, Wu Q, Huang SM, Liu S
Applied Surface Science, 433, 815, 2018
7 A gas sensor based on Ga-doped SnO2 porous microflowers for detecting formaldehyde at low temperature
Du LT, Li HY, Li S, Liu L, Li Y, Xu SY, Gong YM, Cheng YL, Zeng XG, Lian QC
Chemical Physics Letters, 713, 235, 2018
8 Enhanced H2S sensing properties of Gallium doped ZnO nanocrystalline films as investigated by DC conductivity and impedance spectroscopy
Girija KG, Somasundaram K, Debnath AK, Topkar A, Vatsa RK
Materials Chemistry and Physics, 214, 297, 2018
9 Resistivity reduction in Ga-doped ZnO films with a barrier layer that prevents Zn desorption
Yamada Y, Inoue S, Kikuchi H, Funaki S
Thin Solid Films, 657, 50, 2018
10 Adsorption of gas molecules on Ga-doped graphene and effect of applied electric field: A DFT study
Liang XY, Ding N, Ng SP, Wu CML
Applied Surface Science, 411, 11, 2017