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Caijin Huang
Caijin Huang
在 fzu.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Carbon-doped BN nanosheets for metal-free photoredox catalysis
C Huang, C Chen, M Zhang, L Lin, X Ye, S Lin, M Antonietti, X Wang
Nature communications 6 (1), 7698, 2015
6632015
Boron Carbon Nitride Semiconductors Decorated with CdS Nanoparticles for Photocatalytic Reduction of CO2
M Zhou, S Wang, P Yang, C Huang, X Wang
ACS Catalysis 8 (6), 4928-4936, 2018
4262018
Dispersing molecular cobalt in graphitic carbon nitride frameworks for photocatalytic water oxidation
G Zhang, C Huang, X Wang
Small 11 (9-10), 1215-1221, 2015
3052015
Dispersed Cu2O Octahedrons on h-BN Nanosheets for p-Nitrophenol Reduction
C Huang, W Ye, Q Liu, X Qiu
ACS applied materials & interfaces 6 (16), 14469-14476, 2014
2432014
Insights into the photosensitivity activity of BiOCl under visible light irradiation
J Hu, W Fan, W Ye, C Huang, X Qiu
Applied Catalysis B: Environmental 158, 182-189, 2014
1992014
Surface plasmon interference excited by tightly focused laser beams
A Bouhelier, F Ignatovich, A Bruyant, C Huang, GC Des Francs, ...
Optics letters 32 (17), 2535-2537, 2007
1992007
Stable colloidal boron nitride nanosheet dispersion and its potential application in catalysis
C Huang, C Chen, X Ye, W Ye, J Hu, C Xu, X Qiu
Journal of Materials Chemistry A 1 (39), 12192-12197, 2013
1732013
In situ construction of NiSe/Mn0. 5Cd0. 5S composites for enhanced photocatalytic hydrogen production under visible light
X Jiang, H Gong, Q Liu, M Song, C Huang
Applied Catalysis B: Environmental 268, 118439, 2020
1662020
Hierarchical BiOCl microflowers with improved visible-light-driven photocatalytic activity by Fe (III) modification
C Huang, J Hu, S Cong, Z Zhao, X Qiu
Applied Catalysis B: Environmental 174, 105-112, 2015
1622015
Enhanced photocatalytic activity of Bi2O3 under visible light irradiation by Cu (II) clusters modification
J Hu, H Li, C Huang, M Liu, X Qiu
Applied Catalysis B: Environmental 142, 598-603, 2013
1382013
Porous hexagonal boron nitride sheets: effect of hydroxyl and secondary amino groups on photocatalytic hydrogen evolution
Q Liu, C Chen, M Du, Y Wu, C Ren, K Ding, M Song, C Huang
ACS Applied Nano Materials 1 (9), 4566-4575, 2018
1342018
A computational investigation of CO oxidation on ruthenium-embedded hexagonal boron nitride nanosheet
C Huang, X Ye, C Chen, S Lin, D Xie
Computational and Theoretical Chemistry 1011, 5-10, 2013
1162013
Enhancing visible‐light hydrogen evolution performance of crystalline carbon nitride by defect engineering
W Ren, J Cheng, H Ou, C Huang, MM Titirici, X Wang
ChemSusChem 12 (14), 3257-3262, 2019
1042019
Tuning of an optical dimer nanoantenna by electrically controlling its load impedance
J Berthelot, A Bouhelier, C Huang, J Margueritat, G Colas-des-Francs, ...
Nano letters 9 (11), 3914-3921, 2009
1042009
POM-incorporated ZnIn2S4 Z-scheme Dual-functional Photocatalysts for Cooperative Benzyl Alcohol Oxidation and H2 Evolution in Aqueous Solution
F Xing, R Zeng, C Cheng, Q Liu, C Huang
Applied Catalysis B: Environmental 306, 121087, 2022
1032022
Cobalt selenide: a versatile cocatalyst for photocatalytic water oxidation with visible light
G Zhang, S Zang, ZA Lan, C Huang, G Li, X Wang
Journal of Materials Chemistry A 3 (35), 17946-17950, 2015
1012015
Tunable charge transfer efficiency in HxMoO3@ ZnIn2S4 hierarchical direct Z-scheme heterojunction toward efficient visible-light-driven hydrogen evolution
F Xing, C Cheng, J Zhang, Q Liu, C Chen, C Huang
Applied Catalysis B: Environmental 285, 119818, 2021
972021
Plasmonic MoO3-x nanosheets with tunable oxygen vacancies as efficient visible light responsive photocatalyst
Q Liu, Y Wu, J Zhang, K Chen, C Huang, H Chen, X Qiu
Applied Surface Science 490, 395-402, 2019
932019
Mo‐Doped ZnIn2S4 Flower‐Like Hollow Microspheres for Improved Visible Light‐Driven Hydrogen Evolution
F Xing, Q Liu, C Huang
Solar RRL, 1900483, 2020
892020
NiSe/Cd0.5Zn0.5S Composite Nanoparticles for Use in p–n Heterojunction-Based Photocatalysts for Solar Energy Harvesting
H Gong, Z Li, Z Chen, Q Liu, M Song, C Huang
ACS Applied Nano Materials 3 (4), 3665-3674, 2020
882020
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