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Chengsi PAN
Chengsi PAN
Jiangnan Univ, Prof
在 jiangnan.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Visible-light-induced degradation of rhodamine B by nanosized Bi2WO6
H Fu, C Pan, W Yao, Y Zhu
J Phys Chem B 109 (47), 22432-9, 2005
13932005
Dramatic Activity of C3N4/BiPO4 Photocatalyst with Core/Shell Structure Formed by Self‐Assembly
C Pan, J Xu, Y Wang, D Li, Y Zhu
Advanced Functional Materials 22 (7), 1518-1524, 2012
8922012
New Type of BiPO4 Oxy-Acid Salt Photocatalyst with High Photocatalytic Activity on Degradation of Dye
C Pan, Y Zhu
Environmental science & technology 44 (14), 5570-5574, 2010
6472010
A complex perovskite‐type oxynitride: the first photocatalyst for water splitting operable at up to 600 nm
C Pan, T Takata, M Nakabayashi, T Matsumoto, N Shibata, Y Ikuhara, ...
Angewandte Chemie International Edition 54 (10), 2955-2959, 2015
464*2015
Enhancement of photocatalytic activity of Bi 2 WO 6 hybridized with graphite-like C 3 N 4
Y Wang, X Bai, C Pan, J He, Y Zhu
Journal of Materials Chemistry 22 (23), 11568-11573, 2012
3752012
Synthesis of CeO2 Nanorods via Ultrasonication Assisted by Polyethylene Glycol
D Zhang, H Fu, L Shi, C Pan, Q Li, Y Chu, W Yu
Inorganic chemistry 46 (7), 2446-2451, 2007
3232007
Origin of photocatalytic activation of silver orthophosphate from first-principles
X Ma, B Lu, D Li, R Shi, C Pan, Y Zhu
The Journal of Physical Chemistry C 115 (11), 4680-4687, 2011
3162011
Core/Shell photocatalyst with spatially separated co‐catalysts for efficient reduction and oxidation of water
D Wang, T Hisatomi, T Takata, C Pan, M Katayama, J Kubota, K Domen
Angewandte Chemie International Edition 52 (43), 11252-11256, 2013
3032013
CTAB assisted hydrothermal synthesis, controlled conversion and CO oxidation properties of CeO2 nanoplates, nanotubes, and nanorods
C Pan, D Zhang, L Shi
Journal of solid state chemistry 181 (6), 1298-1306, 2008
2782008
Template‐Free Synthesis, Controlled Conversion, and CO Oxidation Properties of CeO2 Nanorods, Nanotubes, Nanowires, and Nanocubes
C Pan, D Zhang, L Shi, J Fang
European Journal of Inorganic Chemistry 2008 (15), 2429-2436, 2008
2462008
Production of visible activity and UV performance enhancement of ZnO photocatalyst via vacuum deoxidation
Y Lv, C Pan, X Ma, R Zong, X Bai, Y Zhu
Applied Catalysis B: Environmental 138, 26-32, 2013
2132013
Fabrication of a core–shell-type photocatalyst via photodeposition of group IV and V transition metal oxyhydroxides: An effective surface modification method for overall water …
T Takata, C Pan, M Nakabayashi, N Shibata, K Domen
Journal of the American Chemical Society 137 (30), 9627-9634, 2015
2042015
Recent progress in oxynitride photocatalysts for visible-light-driven water splitting
T Takata, C Pan, K Domen
Science and Technology of Advanced Materials 16 (3), 033506, 2015
1872015
Size-controlled synthesis of BiPO 4 nanocrystals for enhanced photocatalytic performance
C Pan, Y Zhu
Journal of Materials Chemistry 21 (12), 4235-4241, 2011
1872011
The surface oxygen vacancy induced visible activity and enhanced UV activity of a ZnO 1− x photocatalyst
Y Lv, W Yao, X Ma, C Pan, R Zong, Y Zhu
Catalysis Science & Technology 3 (12), 3136-3146, 2013
1852013
Synthesis, characterization and photocatalytic properties of nanosized Bi2WO6, PbWO4 and ZnWO4 catalysts
H Fu, C Pan, L Zhang, Y Zhu
Materials Research Bulletin 42 (4), 696-706, 2007
1792007
Photocatalytic overall water splitting on the perovskite-type transition metal oxynitride CaTaO 2 N under visible light irradiation
J Xu, C Pan, T Takata, K Domen
Chemical Communications 51 (33), 7191-7194, 2015
1722015
Effects of distortion of PO 4 tetrahedron on the photocatalytic performances of BiPO 4
C Pan, D Li, X Ma, Y Chen, Y Zhu
Catalysis Science & Technology 1 (8), 1399-1405, 2011
1702011
Metal-support interaction for heterogeneous catalysis: from nanoparticles to single atoms
Y Lou, J Xu, Y Zhang, C Pan, Y Dong, Y Zhu
Materials Today Nano 12, 100093, 2020
1512020
A review of BiPO 4, a highly efficient oxyacid-type photocatalyst, used for environmental applications
C Pan, Y Zhu
Catalysis Science & Technology 5 (6), 3071-3083, 2015
1412015
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