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In-situ Reconstruction of Catalyst in Electrocatalysis
Review article
2024
Authors:
Feng, Jinxian
;
Wang, Xuesen
;
Pan, Hui
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
27.4
/
30.2
|
Submit date:2024/11/05
Electrocatalysis
Energy Conversion
In-situ Reconstruction
Rationally Control
Surface Structure
Surface reconstruction on silver nanoparticles decorated trimetallic hydroxide nanosheets to generate highly active oxygen-deficient (oxy)hydroxide layer for high-efficient water oxidation
Journal article
Xinyu Du, Junling Guo, Mingpeng Chen, Weng-Chon Cheong, Yuyun Chen, Dong Liu, Shi Chen, Xuesen Wang, Kin Ho Lo, Jin Song Hu, Hui Pan. Surface reconstruction on silver nanoparticles decorated trimetallic hydroxide nanosheets to generate highly active oxygen-deficient (oxy)hydroxide layer for high-efficient water oxidation[J]. Chemical Engineering Journal, 2021, 425, 131662.
Authors:
Xinyu Du
;
Junling Guo
;
Mingpeng Chen
;
Weng-Chon Cheong
;
Yuyun Chen
; et al.
Favorite
|
TC[WOS]:
21
TC[Scopus]:
21
IF:
13.3
/
13.2
|
Submit date:2021/09/10
Oxygen-deficient (Oxy)Hydroxide Layer
Silver Nanoparticles Decoration
Spontaneous Redox Reaction
Surface Reconstruction
Development of Perovskite Oxide-Based Electrocatalysts for Oxygen Evolution Reaction
Journal article
Liu,Dong, Zhou,Pengfei, Bai,Haoyun, Ai,Haoqiang, Du,Xinyu, Chen,Mingpeng, Liu,Di, Ip,Weng Fai, Lo,Kin Ho, Kwok,Chi Tat, Chen,Shi, Wang,Shuangpeng, Xing,Guichuan, Wang,Xuesen, Pan,Hui. Development of Perovskite Oxide-Based Electrocatalysts for Oxygen Evolution Reaction[J]. Small, 2021, 17(43).
Authors:
Liu,Dong
;
Zhou,Pengfei
;
Bai,Haoyun
;
Ai,Haoqiang
;
Du,Xinyu
; et al.
Favorite
|
TC[WOS]:
107
TC[Scopus]:
101
IF:
13.0
/
13.5
|
Submit date:2023/08/03
Electrocatalysts
Oxygen Evolution Reaction
Perovskite Oxides
Water Oxidation
Development of Perovskite Oxide-Based Electrocatalysts for Oxygen Evolution Reaction
Journal article
Dong Liu, Pengfei Zhou, Haoyun Bai, Haoqiang Ai, Xinyu Du, Mingpeng Chen, Di Liu, Weng Fai Ip, Kin Ho Lo, Chi Tat Kwok, Shi Chen, Shuangpeng Wang, Guichuan Xing, Xuesen Wang, Hui Pan. Development of Perovskite Oxide-Based Electrocatalysts for Oxygen Evolution Reaction[J]. Small, 2021, 17(43), 2101605.
Authors:
Dong Liu
;
Pengfei Zhou
;
Haoyun Bai
;
Haoqiang Ai
;
Xinyu Du
; et al.
Favorite
|
TC[WOS]:
107
TC[Scopus]:
100
IF:
13.0
/
13.5
|
Submit date:2021/09/10
Electrocatalysts
Oxygen Evolution Reaction
Perovskite Oxides
Water Oxidation
Development of Electrocatalysts for Efficient Nitrogen Reduction Reaction under Ambient Condition
Journal article
Dong Liu, Mingpeng Chen, Xinyu Du, Haoqiang Ai, Kin Ho Lo, Shuangpeng Wang, Shi Chen, Guichuan Xing, Xuesen Wang, Hui Pan. Development of Electrocatalysts for Efficient Nitrogen Reduction Reaction under Ambient Condition[J]. Advanced Functional Materials, 2021, 31(11).
Authors:
Dong Liu
;
Mingpeng Chen
;
Xinyu Du
;
Haoqiang Ai
;
Kin Ho Lo
; et al.
Favorite
|
TC[WOS]:
308
TC[Scopus]:
179
IF:
18.5
/
19.6
|
Submit date:2021/03/09
Two-dimensional materials as novel co-catalysts for efficient solar-driven hydrogen production
Journal article
Rui Tong, Kar Wei Ng, Xina Wang, Shuangpeng Wang, Xuesen Wang, Hui Pan. Two-dimensional materials as novel co-catalysts for efficient solar-driven hydrogen production[J]. Journal of Materials Chemistry A, 2020, 8(44), 23202-23230.
Authors:
Rui Tong
;
Kar Wei Ng
;
Xina Wang
;
Shuangpeng Wang
;
Xuesen Wang
; et al.
Favorite
|
TC[WOS]:
90
TC[Scopus]:
95
IF:
10.7
/
10.8
|
Submit date:2021/03/09
PLD-fabricated perovskite oxide nanofilm as efficient electrocatalyst with highly enhanced water oxidation performance
Journal article
Xinyu Du, Haoqiang Ai, Mingpeng Chen, Dong Liu, Shi Chen, Xuesen Wang, Kin Ho Lo, Hui Pan. PLD-fabricated perovskite oxide nanofilm as efficient electrocatalyst with highly enhanced water oxidation performance[J]. Applied Catalysis B: Environmental, 2020, 272, 119046.
Authors:
Xinyu Du
;
Haoqiang Ai
;
Mingpeng Chen
;
Dong Liu
;
Shi Chen
; et al.
Favorite
|
TC[WOS]:
35
TC[Scopus]:
36
IF:
20.2
/
18.9
|
Submit date:2021/03/09
Low Mass Loading
Optimal Oxygen Vacancies
Oxygen Evolution Reaction
Perovskite Nanofilm
Pld-fabricated
WXy/g-C3N4 (WXy=W2C, WS2, or W2N) Composites for Highly Efficient Photocatalytic Water Splitting
Journal article
Mengmeng Shao, Wenzhou Chen, Shengjie Ding, Kin Ho Lo, XiongweiZhong, Linmin Yao, WengFai Ip, Baomin Xu, Xuesen Wang, Hui Pan. WXy/g-C3N4 (WXy=W2C, WS2, or W2N) Composites for Highly Efficient Photocatalytic Water Splitting[J]. ChemSusChem, 2019, 12(14), 3355-3362.
Authors:
Mengmeng Shao
;
Wenzhou Chen
;
Shengjie Ding
;
Kin Ho Lo
;
XiongweiZhong
; et al.
Favorite
|
TC[WOS]:
80
TC[Scopus]:
82
IF:
7.5
/
8.4
|
Submit date:2021/03/09
Carbides
Carbon Nitride
Hydrogen Evolution
Photocatalysis
Tungsten
Carbonized MoS2: Super-Active Co-Catalyst for Highly Efficient Water Splitting on CdS
Journal article
Mengmeng Shao, Yangfan Shao, Shengjie Ding, Rui Tong., Xiongwei Zhong, Lingmin Yao, Weng Fai Ip, Baomin Xu, Xing-Qiang Shi, Yi-Yang Sun, Xuesen Wang, Hui Pan. Carbonized MoS2: Super-Active Co-Catalyst for Highly Efficient Water Splitting on CdS[J]. ACS Sustainable Chemistry and Engineering, 2019, 7(4), 4220-4229.
Authors:
Mengmeng Shao
;
Yangfan Shao
;
Shengjie Ding
;
Rui Tong.
;
Xiongwei Zhong
; et al.
Favorite
|
TC[WOS]:
70
TC[Scopus]:
71
IF:
7.1
/
7.9
|
Submit date:2019/04/08
Mos2/mo2c
Co-catalyst
Photocatalytic Hydrogen Evolution
Cds
Vanadium disulfide decorated graphitic carbon nitride for super-efficient solar-driven hydrogen evolution
Journal article
Shao, Mengmeng, Shao, Yangfan, Ding, Shengjie, Wang, Jingwei, Xu, Jinchen, Qu, Yuanju, Zhong, Xiongwei, Chen, Xinman, Ip, Weng Fai, Wang, Ning, Xu, Baomin, Shi, Xingqiang, Wang, Xuesen, Pan, Hui. Vanadium disulfide decorated graphitic carbon nitride for super-efficient solar-driven hydrogen evolution[J]. APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 237, 295-301.
Authors:
Shao, Mengmeng
;
Shao, Yangfan
;
Ding, Shengjie
;
Wang, Jingwei
;
Xu, Jinchen
; et al.
Favorite
|
TC[WOS]:
90
TC[Scopus]:
91
IF:
20.2
/
18.9
|
Submit date:2018/10/30
G-c3n4
Vs2
Photocatalytic Hydrogen Evolution
Charge Transfer
Electron-hole Separation