0D/2D spatial structure of CdxZn1-xS/Ni-MOF-74 for efficient photocatalytic hydrogen evolution

被引:75
作者
Li, Mei [1 ,2 ,3 ]
Li, Junke [1 ,2 ,3 ]
Jin, Zhiliang [1 ,2 ,3 ]
机构
[1] North Minzu Univ, Sch Chem & Chem Engn, Yinchuan 750021, Ningxia, Peoples R China
[2] North Minzu Univ, Ningxia Key Lab Solar Chem Convers Technol, Yinchuan 750021, Ningxia, Peoples R China
[3] North Minzu Univ, State Ethn Affairs Commiss, Key Lab Chem Engn & Technol, Yinchuan 750021, Ningxia, Peoples R China
关键词
FACILE HYDROTHERMAL TRANSFORMATION; GRAPHITIC CARBON NITRIDE; SOLID-SOLUTION; ADSORPTIVE DESULFURIZATION; CHARGE-TRANSFER; HETEROJUNCTION; HYBRID; CDS; COCATALYST; NANOCOMPOSITE;
D O I
10.1039/d0dt00271b
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
A novel zero-dimensional/two-dimensional CdxZn1-xS/Ni-MOF-74 (CZS/NMF) heterojunction was rationally constructed via a simple hydrothermal and physical mixing method. The results show that the CZS/NMF-4 composite has the best photocatalytic hydrogen evolution performance, generating 1712.3 mu mol of hydrogen within 5 h, approximately 10 times higher than the amount generated by pure CZS. This extraordinary enhanced photocatalytic hydrogen activity can be ascribed to the constitution of the direct Z-scheme heterojunction and the small size effect, as well as the intimate contact between the 0D CdxZn1-xS nanoparticles and the 2D Ni-MOF-74 sheets. The formation of the direct Z-scheme heterojunction can effectively reduce the migration resistance of light-generated carriers and dramatically promote the separation of photo-induced electrons and holes. Meanwhile, the size effect shortens the electron transfer distance which effectively decreases the recombination possibility of photo-induced electron-hole pairs. Furthermore, the 0D/2D spatial structure of CZS/NMF-4 dramatically reduces the agglomeration of CZS nanoparticles, which provides more active sites for the process of hydrogen evolution. In general, this work provides new inspiration for the application of combinations between progressively developing new MOF materials and the traditional CdxZn1-xS photocatalyst according to the construction of a special spatial structure.
引用
收藏
页码:5143 / 5156
页数:14
相关论文
共 67 条
[11]   CHEMISORPTION AND VIBRATION OF HYDROGEN ON CU(111) [J].
GUNDERSEN, K ;
HAMMER, B ;
JACOBSEN, KW ;
NORSKOV, JK ;
LIN, JS ;
MILMAN, V .
SURFACE SCIENCE, 1993, 285 (1-2) :27-30
[12]   Zinc vacancy-promoted photocatalytic activity and photostability of ZnS for efficient visible-light-driven hydrogen evolution [J].
Hao, Xuqiang ;
Wang, Yicong ;
Zhou, Jun ;
Cui, Zhiwei ;
Wang, Ying ;
Zou, Zhigang .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 221 :302-311
[13]   Utilizing the Space-Charge Region of the FeNi-LDH/CoP p-n Junction to Promote Performance in Oxygen Evolution Electrocatalysis [J].
He, Kai ;
Tsega, Tsegaye Tadesse ;
Liu, Xi ;
Zai, Jiantao ;
Li, Xin-Hao ;
Liu, Xuejiao ;
Li, Wenhao ;
Ali, Nazakat ;
Qian, Xuefeng .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58 (34) :11903-11909
[14]   Heterojunction of Zinc Blende/Wurtzite in Zn1-xCdxS Solid Solution for Efficient Solar Hydrogen Generation: X-ray Absorption/Diffraction Approaches [J].
Hsu, Ying-Ya ;
Suen, Nian-Tzu ;
Chang, Chung-Chieh ;
Hung, Sung-Fu ;
Chen, Chi-Liang ;
Chan, Ting-Shan ;
Dong, Chung-Li ;
Chan, Chih-Chieh ;
Chen, San-Yuan ;
Chen, Hao Ming .
ACS APPLIED MATERIALS & INTERFACES, 2015, 7 (40) :22558-22569
[15]   Preparation of 2D hydroxyl-rich carbon nitride nanosheets for photocatalytic reduction of CO2 [J].
Huang, Yan ;
Wang, Yanjie ;
Bi, Yiqing ;
Jin, Jiarui ;
Ehsan, Muhammad Fahad ;
Fu, Min ;
He, Tao .
RSC ADVANCES, 2015, 5 (42) :33254-33261
[16]   CdZnS solid solution supported Ce2Sn2O7 pyrochlore photocatalyst that proves to be an efficient candidate towards the removal of organic pollutants [J].
Jayarama, Venkatesan ;
Palanivel, Baskaran ;
Ayappan, Chinnadurai ;
Chellamuthu, Muthamizhchelvan ;
Mani, Alagiri .
SEPARATION AND PURIFICATION TECHNOLOGY, 2019, 224 :405-420
[17]   Inter-plane heterojunctions within 2D/2D FeSe2/g-C3N4 nanosheet semiconductors for photocatalytic hydrogen generation [J].
Jia, Jia ;
Sun, Wenjuan ;
Zhang, Qiqi ;
Zhang, Xiaozhuo ;
Hu, Xiaoyun ;
Liu, Enzhou ;
Fan, Jun .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2020, 261
[18]   MOF-74 as an Efficient Catalyst for the Low-Temperature Selective Catalytic Reduction of NOx with NH3 [J].
Jiang, Haoxi ;
Wang, Qianyun ;
Wang, Huiqin ;
Chen, Yifei ;
Zhang, Minhua .
ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (40) :26817-26826
[19]   Ultrathin Metal-Organic Framework: An Emerging Broadband Nonlinear Optical Material for Ultrafast Photonics [J].
Jiang, Xiantao ;
Zhang, Liangjing ;
Liu, Shunxiang ;
Zhang, Yiyue ;
He, Zhiliang ;
Li, Wenjia ;
Zhang, Feng ;
Shi, Yihuang ;
Lue, Wei ;
Li, Yu ;
Wen, Qiao ;
Li, Jiagen ;
Feng, Jun ;
Ruan, Shuangchen ;
Zeng, Yu-Jia ;
Zhu, Xi ;
Lu, Yuerui ;
Zhang, Han .
ADVANCED OPTICAL MATERIALS, 2018, 6 (16)
[20]   Layered nickel metal-organic framework for high performance alkaline battery-supercapacitor hybrid devices [J].
Jiao, Yang ;
Pei, Jian ;
Yan, Chunshuang ;
Chen, Dahong ;
Hu, Yongyuan ;
Chen, Gang .
JOURNAL OF MATERIALS CHEMISTRY A, 2016, 4 (34) :13344-13351