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Hao Cui
Hao Cui
Southwest University
cqu.edu.cn의 이메일 확인됨
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Pd-doped MoS2 monolayer: A promising candidate for DGA in transformer oil based on DFT method
H Cui, X Zhang, G Zhang, J Tang
Applied Surface Science 470, 1035-1042, 2019
2722019
Adsorption of SO2 and NO2 molecule on intrinsic and Pd-doped HfSe2 monolayer: A first-principles study
H Cui, P Jia, X Peng
Applied Surface Science 513, 145863, 2020
2712020
Rh-doped MoSe 2 as a toxic gas scavenger: A first-principles study
H Cui, G Zhang, X Zhang, J Tang
Nanoscale Advances 1 (2), 772-780, 2019
2712019
Adsorption and sensing behaviors of SF6 decomposed species on Ni-doped C3N monolayer: A first-principles study
H Cui, C Yan, P Jia, W Cao
Applied Surface Science 512, 145759, 2020
2672020
First-principles insight into Ni-doped InN monolayer as a noxious gases scavenger
H Cui, X Zhang, Y Li, D Chen, Y Zhang
Applied Surface Science 494, 859-866, 2019
2542019
Dissolved gas analysis in transformer oil using Pd catalyst decorated MoSe2 monolayer: A first-principles theory
H Cui, D Chen, Y Zhang, X Zhang
Sustainable Materials and Technologies 20, e00094, 2019
2062019
Ru-InN Monolayer as a Gas Scavenger to Guard the Operation Status of SF6 Insulation Devices: A First-Principles Theory
H Cui, T Liu, Y Zhang, X Zhang
IEEE Sensors Journal 19 (13), 5249-5255, 2019
1712019
Pristine and Cu decorated hexagonal InN monolayer, a promising candidate to detect and scavenge SF6 decompositions based on first-principle study
D Chen, X Zhang, J Tang, Z Cui, H Cui
Journal of hazardous materials 363, 346-357, 2019
1612019
Pt & Pd decorated CNT as a workable media for SOF2 sensing: A DFT study
H Cui, X Zhang, D Chen, J Tang
Applied Surface Science 471, 335-341, 2019
1372019
Nanomaterials‐based gas sensors of SF6 decomposed species for evaluating the operation status of high‐voltage insulation devices
H Cui, X Zhang, J Zhang, Y Zhang
High Voltage 4 (4), 242-258, 2019
1352019
Adsorption mechanism of SF6 decomposed species on pyridine-like PtN3 embedded CNT: a DFT study
H Cui, X Zhang, D Chen, J Tang
Applied Surface Science 447, 594-598, 2018
1312018
SOF2 sensing by Rh-doped PtS2 monolayer for early diagnosis of partial discharge in the SF6 insulation device
P Li, Q Hong, T Wu, H Cui
Molecular Physics 119 (11), e1919774, 2021
1202021
Noble metal (Pt or Au)-doped monolayer MoS2 as a promising adsorbent and gas-sensing material to SO2, SOF2 and SO2F2: a DFT study
D Chen, X Zhang, J Tang, H Cui, Y Li
Applied Physics A 124, 1-12, 2018
1202018
Mechanism and Application of Carbon Nanotube Sensors in SF6 Decomposed Production Detection: a Review
X Zhang, H Cui, Y Gui, J Tang
Nanoscale research letters 12, 1-12, 2017
1092017
Adsorption and sensing of CO and C2H2 by S-defected SnS2 monolayer for DGA in transformer oil: A DFT study
H Cui, P Jia, X Peng, P Li
Materials Chemistry and Physics 249, 123006, 2020
972020
Theoretical Study of Monolayer PtSe2as Outstanding Gas Sensor to Detect SF6Decompositions
D Chen, X Zhang, J Tang, Z Cui, H Cui, S Pi
IEEE Electron Device Letters 39 (9), 1405-1408, 2018
752018
Adsorption and sensing of SO2 and SOF2 molecule by Pt-doped HfSe2 monolayer: A first-principles study
H Cui, H Zhu, P Jia
Applied Surface Science 530, 147242, 2020
712020
Adsorption performance of Rh decorated SWCNT upon SF6 decomposed components based on DFT method
X Zhang, H Cui, X Dong, D Chen, J Tang
Applied Surface Science 420, 825-832, 2017
592017
Adsorption characteristic of Rh-doped MoSe2 monolayer towards H2 and C2H2 for DGA in transformer oil based on DFT method
Y Zhang, X Sun, S Tan, T Liu, H Cui
Applied Surface Science 487, 930-937, 2019
572019
Rh-doped MoTe2 Monolayer as a Promising Candidate for Sensing and Scavenging SF6 Decomposed Species: a DFT Study
H Zhu, H Cui, D He, Z Cui, X Wang
Nanoscale research letters 15, 1-11, 2020
532020
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학술자료 1–20