Strong interfacial coupling for NiS thin layer covered CdS nanorods with highly efficient photocatalytic hydrogen production

被引:24
作者
Chen, Zhaohui [1 ]
Cheng, Chuchu [1 ]
Xing, Fangshu [1 ]
Huang, Caijin [1 ]
机构
[1] Fuzhou Univ, Coll Chem, State Key Lab Photocatalysis Energy & Environm, Fuzhou 350116, Peoples R China
基金
中国国家自然科学基金;
关键词
G-C3N4; NANOSHEETS; IN-SITU; H-2; PERFORMANCE; NANOWIRES; EVOLUTION; NANOPARTICLES; EXFOLIATION; FABRICATION; COMPOSITE;
D O I
10.1039/d0nj04335d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The construction of heterojunctions is beneficial to improve the separation efficiency of photogenerated electron-hole pairs, so as to enhance the activity of photocatalysts. Herein, NiS thin layer covered CdS nanorods (NiS/CdS) were synthesized by a two-step hydrothermal approach. Under the irradiation of visible light, the optimal NiS/CdS covered heterojunctions showed high photocatalytic stability and excellent hydrogen evolution rate up to 401.7 mmol g(-1) h(-1), which is higher than that of most CdS-based photocatalysts. The apparent quantum efficiency of NiS/CdS at 420 nm was 1.5%. The formation of NiS/CdS heterojunctions with large intimate contact area leads to strong interfacial coupling between NiS thin layers and CdS nanorods. This promotes the separation and migration of photoinduced electron-hole pairs and provides more active sites for redox reactions, thus improving the activity of photocatalysts. This work presents new ideas for the design of high-performance photocatalysts for H-2 production.
引用
收藏
页码:19083 / 19090
页数:8
相关论文
共 40 条
[1]   2D/2D Heterojunction of Ultrathin MXene/Bi2WO6 Nanosheets for Improved Photocatalytic CO2 Reduction [J].
Cao, Shaowen ;
Shen, Baojia ;
Tong, Tong ;
Fu, Junwei ;
Yu, Jiaguo .
ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (21)
[2]   Transition Metal Disulfides as Noble-Metal-Alternative Co-Catalysts for Solar Hydrogen Production [J].
Chang, Kun ;
Hai, Xiao ;
Ye, Jinhua .
ADVANCED ENERGY MATERIALS, 2016, 6 (10)
[3]   NiSe2 Nanoparticles Grown in Situ on CdS Nanorods for Enhanced Photocatalytic Hydrogen Evolution [J].
Chen, Zhaohui ;
Gong, Haisheng ;
Liu, Qiuwen ;
Song, Mingxia ;
Huang, Caijin .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2019, 7 (19) :16720-16728
[4]   CdS-Based photocatalysts [J].
Cheng, Lei ;
Xiang, Quanjun ;
Liao, Yulong ;
Zhang, Huaiwu .
ENERGY & ENVIRONMENTAL SCIENCE, 2018, 11 (06) :1362-1391
[5]   Construction of complex NiS multi-shelled hollow structures with enhanced sodium storage [J].
Fan, Shuang ;
Huang, Shaozhuan ;
Chen, Yaxin ;
Shang, Yang ;
Wang, Ye ;
Kong, Dezhi ;
Pam, Mei Er ;
Shi, Liluo ;
Lim, Yew Won ;
Shi, Yumeng ;
Yang, Hui Ying .
ENERGY STORAGE MATERIALS, 2019, 23 :17-24
[6]   Core-shell CdS@MnS nanorods as highly efficient photocatalysts for visible light driven hydrogen evolution [J].
Fang, Xueyou ;
Cui, Lifeng ;
Pu, Tingting ;
Song, Jialing ;
Zhang, Xiaodong .
APPLIED SURFACE SCIENCE, 2018, 457 :863-869
[7]   Effectively enhanced photocatalytic hydrogen production performance of one-pot synthesized MoS2 clusters/CdS nanorod heterojunction material under visible light [J].
Feng, Chang ;
Chen, Zhuoyuan ;
Hou, Jian ;
Li, Jiarun ;
Li, Xiangbo ;
Xu, Likun ;
Sun, Mingxian ;
Zeng, Rongchang .
CHEMICAL ENGINEERING JOURNAL, 2018, 345 :404-413
[8]   Core-shell Ag2CrO4/N-GQDs@g-C3N4 composites with anti-photocorrosion performance for enhanced full-spectrum-light photocatalytic activities [J].
Feng, Chengyang ;
Deng, Yaocheng ;
Tang, Lin ;
Zeng, Guangming ;
Wang, Jiajia ;
Yu, Jiangfang ;
Liu, Yani ;
Peng, Bo ;
Feng, Haopeng ;
Wang, Jingjing .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 239 :525-536
[9]   NiSe as an effective co-catalyst coupled with TiO2 for enhanced photocatalytic hydrogen evolution [J].
Gong, Haisheng ;
Liu, Qiuwen ;
Huang, Caijin .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (10) :4821-4831
[10]   β-NiS modified CdS nanowires for photocatalytic H2 evolution with exceptionally high efficiency [J].
Guan, Shundong ;
Fu, Xiuli ;
Zhang, Yu ;
Peng, Zhijian .
CHEMICAL SCIENCE, 2018, 9 (06) :1574-1585