Follow
Caihong Fang
Caihong Fang
Unknown affiliation
Verified email at phy.cuhk.edu.hk
Title
Cited by
Cited by
Year
Metal/semiconductor hybrid nanostructures for plasmon‐enhanced applications
R Jiang, B Li, C Fang, J Wang
Advanced materials 26 (31), 5274-5309, 2014
10972014
Plasmon-enhanced chemical reactions
M Xiao, R Jiang, F Wang, C Fang, J Wang, CY Jimmy
Journal of Materials Chemistry A 1 (19), 5790-5805, 2013
3362013
Titania supported synergistic palladium single atoms and nanoparticles for room temperature ketone and aldehydes hydrogenation
L Kuai, Z Chen, S Liu, E Kan, N Yu, Y Ren, C Fang, X Li, Y Li, B Geng
Nature communications 11 (1), 48, 2020
3072020
(Gold core)/(titania shell) nanostructures for plasmon-enhanced photon harvesting and generation of reactive oxygen species
C Fang, H Jia, S Chang, Q Ruan, P Wang, T Chen, J Wang
Energy & Environmental Science 7 (10), 3431-3438, 2014
1972014
Synthesis of Polyhedral ZnSnO3 Microcrystals with Controlled Exposed Facets and Their Selective Gas‐Sensing Properties
B Geng, C Fang, F Zhan, N Yu
small 4 (9), 1337-1343, 2008
1572008
A facile coordination compound precursor route to controlled synthesis of Co 3 O 4 nanostructures and their room-temperature gas sensing properties
B Geng, F Zhan, C Fang, N Yu
Journal of Materials Chemistry 18 (41), 4977-4984, 2008
1402008
Distinct plasmonic manifestation on gold nanorods induced by the spatial perturbation of small gold nanospheres
L Shao, C Fang, H Chen, YC Man, J Wang, HQ Lin
Nano letters 12 (3), 1424-1430, 2012
1362012
Cellular uptake behaviour, photothermal therapy performance, and cytotoxicity of gold nanorods with various coatings
XM Zhu, C Fang, H Jia, Y Huang, CHK Cheng, CH Ko, Z Chen, J Wang, ...
Nanoscale 6 (19), 11462-11472, 2014
1162014
Synthesis of absorption-dominant small gold nanorods and their plasmonic properties
H Jia, C Fang, XM Zhu, Q Ruan, YXJ Wang, J Wang
Langmuir 31 (26), 7418-7426, 2015
1102015
A gold nanocrystal/poly (dimethylsiloxane) composite for plasmonic heating on microfluidic chips
C Fang, L Shao, Y Zhao, J Wang, H Wu
Advanced Materials 1 (24), 94-98, 2011
1082011
Oxygen Vacancy–Enhanced Electrocatalytic Performances of TiO2 Nanosheets toward N2 Reduction Reaction
C Fang, T Bi, X Xu, N Yu, Z Cui, R Jiang, B Geng
Advanced Materials Interfaces 6 (21), 1901034, 2019
682019
d-fructose molecule template route to ultra-thin ZnSnO 3 nanowire architectures and their application as efficient photocatalyst
C Fang, B Geng, J Liu, F Zhan
Chemical communications, 2350-2352, 2009
632009
Crystalline structure-dependent growth of bimetallic nanostructures
Q Li, R Jiang, T Ming, C Fang, J Wang
Nanoscale 4 (22), 7070-7077, 2012
622012
Aerosol-spray diverse mesoporous metal oxides from metal nitrates
L Kuai, J Wang, T Ming, C Fang, Z Sun, B Geng, J Wang
Scientific reports 5 (1), 9923, 2015
602015
Correlating the plasmonic and structural evolutions during the sulfidation of silver nanocubes
C Fang, YH Lee, L Shao, R Jiang, J Wang, QH Xu
Acs Nano 7 (10), 9354-9365, 2013
592013
Facile production of self-assembly hierarchical dumbbell-like CoOOH nanostructures and their room-temperature CO-gas-sensing properties
B Geng, F Zhan, H Jiang, Z Xing, C Fang
Crystal Growth and Design 8 (10), 3497-3500, 2008
592008
Facile growth of high-yield gold nanobipyramids induced by chloroplatinic acid for high refractive index sensing properties
C Fang, G Zhao, Y Xiao, J Zhao, Z Zhang, B Geng
Scientific Reports 6 (1), 36706, 2016
532016
Platinum‐based electrocatalysts for direct alcohol fuel cells: enhanced performances toward alcohol oxidation reactions
G Zhao, C Fang, J Hu, D Zhang
ChemPlusChem 86 (4), 574-586, 2021
492021
Simultaneous tunable structure and composition of PtAg alloyed nanocrystals as superior catalysts
C Fang, J Zhao, G Zhao, L Kuai, B Geng
Nanoscale 8 (32), 14971-14978, 2016
422016
CdS/CeO2 heterostructures as visible-light photocatalysts for the reduction of nitro to amine organics
Z Cui, D Zhang, J Hu, C Fang
Journal of Alloys and Compounds 885, 160961, 2021
362021
The system can't perform the operation now. Try again later.
Articles 1–20