Heterostructured WS2-MoS2 Ultrathin Nanosheets Integrated on CdS Nanorods to Promote Charge Separation and Migration and Improve Solar-Driven Photocatalytic Hydrogen Evolution

被引:150
|
作者
Reddy, D. Amaranatha [1 ,2 ]
Park, Hanbit [1 ,2 ]
Ma, Rory [1 ,2 ]
Kumar, D. Praveen [1 ,2 ]
Lim, Manho [1 ,2 ]
Kim, Tae Kyu [1 ,2 ]
机构
[1] Pusan Natl Univ, Dept Chem, Busan 46241, South Korea
[2] Pusan Natl Univ, Chem Inst Funct Mat, Busan 46241, South Korea
基金
新加坡国家研究基金会;
关键词
cadmium; hydrogen; molybdenum; nanohybrids; tungsten; water splitting; THIN MOS2/WS2 HETEROSTRUCTURES; VISIBLE-LIGHT IRRADIATION; CATALYTIC-ACTIVITY; EFFICIENT PHOTOCATALYST; ELECTRON-TRANSFER; FUEL GENERATION; COCATALYST; WATER; WS2; SEMICONDUCTOR;
D O I
10.1002/cssc.201601799
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Solar-driven photocatalytic hydrogen evolution is important to bring solar-energy-to-fuel energy-conversion processes to reality. However, there is a lack of highly efficient, stable, and non-precious photocatalysts, and catalysts not designed completely with expensive noble metals have remained elusive, which hampers their large-scale industrial application. Herein, for the first time, a highly efficient and stable noble-metal-free CdS/WS2-MoS2 nanocomposite was designed through a facile hydrothermal approach. When assessed as a photocatalyst for water splitting, the CdS/WS2-MoS2 nanostructures exhibited remarkable photocatalytic hydrogen-evolution performance and impressive durability. An excellent hydrogen evolution rate of 209.79mmolg(-1)h(-1) was achieved under simulated sunlight irradiation, which is higher than the values for CdS/MoS2 (123.31mmolg(-1)h(-1)) and CdS/WS2 nanostructures (169.82mmolg(-1)h(-1)) and the expensive CdS/Pt benchmark catalyst (34.98mmolg(-1)h(-1)). The apparent quantum yield reached 51.4% at =425nm in 5h. Furthermore, the obtained hydrogen evolution rate was better than those of several noble-metal-free catalysts reported previously. The observed high rate of hydrogen evolution and remarkable stability may be a result of the ultrafast separation of photogenerated charge carriers and transport between the CdS nanorods and the WS2-MoS2 nanosheets, which thus increases the number of electrons involved in hydrogen production. The proposed designed strategy is believed to potentially open a door to the design of advanced noble-metal-free photocatalytic materials for efficient solar-driven hydrogen production.
引用
收藏
页码:1563 / 1570
页数:8
相关论文
共 50 条
  • [21] Modulation of charge carrier pathways in CdS nanospheres by integrating MoS2 and Ni2P for improved migration and separation toward enhanced photocatalytic hydrogen evolution
    Choi, Jiha
    Reddy, D. Amaranatha
    Han, Noh Soo
    Jeong, Seonghyun
    Hong, Sangyeob
    Kumar, D. Praveen
    Song, Jae Kyu
    Kim, Tae Kyu
    CATALYSIS SCIENCE & TECHNOLOGY, 2017, 7 (03) : 641 - 649
  • [22] Assembly of TiO2 ultrathin nanosheets with surface lattice distortion for solar-light-driven photocatalytic hydrogen evolution
    Hu, Shan
    Qiao, Panzhe
    Zhang, Liping
    Jiang, Baojiang
    Gao, Yanting
    Hou, Feng
    Wu, Baogang
    Li, Qi
    Jiang, Yong
    Tian, Chungui
    Zhou, Wei
    Tian, Guohui
    Fu, Honggang
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 239 : 317 - 323
  • [23] Formation of hybrid nanostructures comprising perovskite (Ba5Nb4O15)-MoS2 ultrathin nanosheets on CdS nanorods: Toward enhanced solar-driven H2 production
    Kim, Eun Hwa
    Reddy, D. Amaranatha
    Hong, Sangyeob
    Park, Hanbit
    Ma, Rory
    Kumar, D. Praveen
    Kim, Tae Kyu
    JOURNAL OF CATALYSIS, 2017, 352 : 617 - 626
  • [24] Enhanced solar driven hydrogen evolution rate by integrating dual co-catalysts (MoS2, SeS2) on CdS nanorods
    Mangiri, Ramanadha
    Kumar, K. Sunil
    Subramanyam, K.
    Sudharani, A.
    Reddy, D. Amaranatha
    Vijayalakshmi, R. P.
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2021, 625
  • [25] Ultrathin black TiO2 nanosheet-assembled microspheres with high stability for efficient solar-driven photocatalytic hydrogen evolution
    Wang, Chunyan
    Kang, Xin
    Liu, Jiancong
    Wang, Dongxu
    Wang, Nan
    Chen, Jie
    Wang, Jing
    Tian, Chungui
    Fu, Honggang
    INORGANIC CHEMISTRY FRONTIERS, 2023, 10 (04) : 1153 - 1163
  • [26] Metallic 1T phase MoS2 nanosheets as a highly efficient co-catalyst for the photocatalytic hydrogen evolution of CdS nanorods
    Du, Ping
    Zhu, Yuanzhi
    Zhang, Junyang
    Xu, Danyun
    Peng, Wenchao
    Zhang, Guoliang
    Zhang, Fengbao
    Fan, Xiaobin
    RSC ADVANCES, 2016, 6 (78) : 74394 - 74399
  • [27] MoS2 grown in situ on CdS nanosheets for boosted photocatalytic hydrogen evolution under visible light
    Zhang, Kejie
    Mou, Zhen
    Cao, Shihai
    Meng, Tingting
    Li, Jiacheng
    Ling, Guangjie
    Zhang, Xiang
    Zhou, Zhiping
    Meng, Wei
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (05) : 2967 - 2975
  • [28] Remarkably enhanced photocatalytic hydrogen evolution over MoS2 nanosheets loaded on uniform CdS nanospheres
    Chai, Bo
    Xu, Mengqiu
    Yan, Juntao
    Ren, Zhandong
    APPLIED SURFACE SCIENCE, 2018, 430 : 523 - 530
  • [29] Construction of plasmonic 1T-WS2/2H-WS2/CdS heterostructures for enhanced solar driven hydrogen evolution
    Chen, Xiaoyu
    Han, Zhi
    Zhang, Bin
    Sun, Bojing
    Wang, Yu
    Du, Yunchen
    Han, Xijiang
    Xu, Ping
    JOURNAL OF MATERIALS CHEMISTRY A, 2022, 10 (45) : 24030 - 24040
  • [30] WO3&WS2 nanorods coupled with CdS nanoparticles for enhanced visible light driven hydrogen evolution
    Wang, Hongmei
    Li, Chunhe
    Ying, Lu
    Fang, Pengfei
    APPLIED SURFACE SCIENCE, 2018, 448 : 539 - 546