Design of MoS2/Graphene van der Waals Heterostructure as Highly Efficient and Stable Electrocatalyst for Hydrogen Evolution in Acidic and Alkaline Media

被引:76
作者
Yu, Xianbo [3 ]
Zhao, Guangyu [1 ]
Gong, Shan [3 ]
Liu, Chao [3 ]
Wu, Canlong [3 ]
Lyu, Pengbo [2 ]
Maurin, Guillaume [2 ]
Zhang, Naiqing [1 ]
机构
[1] Harbin Inst Technol, Interdisciplinary Sci Res Ctr, Harbin 150001, Heilongjiang, Peoples R China
[2] Univ Montpellier, ENSCM, CNRS, ICGM, F-34095 Montpellier, France
[3] Harbin Inst Technol, Sch Chem & Chem Engn, Harbin 150001, Heilongjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
molybdenum disulfide; van der Waals heterostructure; Gibbs free energy; hydrogen evolution reaction; electrocatalyst; MOS2; NANOSHEETS; LARGE-AREA; CATALYSIS; STORAGE;
D O I
10.1021/acsami.0c04838
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The thermodynamically stable phase of molybdenum disulfide (MoS2) is evaluated as a promising and durable nonprecious-metal electrocatalyst toward the hydrogen evolution reaction (HER); however, its actual catalytic activity is restricted by an inert basal plane, low electronic conductivity, low density, and using efficiency of edged atoms. Moreover, 2D/2D van der Waals (vdws) heterostructures (HSs) with face-to-face contact can construct a highly coupled interface and are demonstrated to have immense potential for catalytic applications. In the present work, a 2D/2D hetero-layered architecture of an electrocatalyst, based on the alternate arrangement of ultrasmall monolayer MoS2 nanosheets (approximately 5-10 nm) and ultrathin graphene (G) sheets, is prepared by a facilely chemical process, which is named as MoS2/G HS. The unique structural characteristic of MoS2/G HS is in favor of accommodating more active sites as the centers of ad/desorption hydrogen and transferring and separating the charges at a coupled interface to improve the electronic conductivity and durability. The density functional theory calculation results further confirm that the alternately arranged G layers and MoS2 monolayers, as well as the expanded interplanar distance of 1.104 nm for MoS2/G HS, can exhibit a superior HER performance in both 0.5 M H2SO, and 1.0 M KOH.
引用
收藏
页码:24777 / 24785
页数:9
相关论文
共 44 条
  • [31] Engineering layer structure of MoS2-graphene composites with robust and fast lithium storage for high-performance Li-ion capacitors
    Wang, Rutao
    Wang, Shijie
    Jin, Dongdong
    Zhang, Yabin
    Cai, Yaojun
    Ma, Jianmin
    Zhang, Li
    [J]. ENERGY STORAGE MATERIALS, 2017, 9 : 195 - 205
  • [32] Ultrastable In-Plane 1T-2H MoS2 Heterostructures for Enhanced Hydrogen Evolution Reaction
    Wang, Shuai
    Zhang, Di
    Li, Bin
    Zhang, Chao
    Du, Zhiguo
    Yin, Haoming
    Bi, Xiaofang
    Yang, Shubin
    [J]. ADVANCED ENERGY MATERIALS, 2018, 8 (25)
  • [33] PVP incorporated MoS2 as a Mg ion host with enhanced capacity and durability
    Wu, Canlong
    Zhao, Guangyu
    Gong, Shan
    Zhang, Naiqing
    Sun, Kening
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (09) : 4426 - 4430
  • [34] Structural Transformation Identification of Sputtered Amorphous MoSX as an Efficient Hydrogen-Evolving Catalyst during Electrochemical Activation
    Xi, Fanxing
    Bogdanoff, Peter
    Harbauer, Karsten
    Plate, Paul
    Hoelm, Christian
    Rappich, Joerg
    Wang, Bin
    Han, Xiaoyu
    van de Krol, Roel
    Fiechter, Sebastian
    [J]. ACS CATALYSIS, 2019, 9 (03) : 2368 - 2380
  • [35] Cobalt Covalent Doping in MoS2 to Induce Bifunctionality of Overall Water Splitting
    Xiong, Qizhong
    Wang, Yun
    Liu, Peng-Fei
    Zheng, Li-Rong
    Wang, Guozhong
    Yang, Hua-Gui
    Wong, Po-Keung
    Zhang, Haimin
    Zhao, Huijun
    [J]. ADVANCED MATERIALS, 2018, 30 (29)
  • [36] Defects Engineered Monolayer MoS2 for Improved Hydrogen Evolution Reaction
    Ye, Gonglan
    Gong, Yongji
    Lin, Junhao
    Li, Bo
    He, Yongmin
    Pantelides, Sokrates T.
    Zhou, Wu
    Vajtai, Robert
    Ajayan, Pulickel M.
    [J]. NANO LETTERS, 2016, 16 (02) : 1097 - 1103
  • [37] Hierarchical carbon nanopapers coupled with ultrathin MoS2 nanosheets: Highly efficient large-area electrodes for hydrogen evolution
    Ye, Tian-Nan
    Lv, Li-Bing
    Xu, Miao
    Zhang, Bing
    Wang, Kai-Xue
    Su, Juan
    Li, Xin-Hao
    Chen, Jie-Sheng
    [J]. NANO ENERGY, 2015, 15 : 335 - 342
  • [38] A strategy to synergistically increase the number of active edge sites and the conductivity of MoS2 nanosheets for hydrogen evolution
    Yu, Hailong
    Yu, Xianbo
    Chen, Yujin
    Zhang, Shen
    Gao, Peng
    Li, Chunyan
    [J]. NANOSCALE, 2015, 7 (19) : 8731 - 8738
  • [39] Hollow CoP nanopaticle/N-doped graphene hybrids as highly active and stable bifunctional catalysts for full water splitting
    Yu, Xianbo
    Zhang, Shen
    Li, Chunyan
    Zhu, Chunling
    Chen, Yujin
    Gao, Peng
    Qi, Lihong
    Zhang, Xitian
    [J]. NANOSCALE, 2016, 8 (21) : 10902 - 10907
  • [40] Immobilized Single Molecular Molybdenum Disulfide on Carbonized Polyacrylonitrile for Hydrogen Evolution Reaction
    Zeleke, Tamene Simachew
    Tsai, Meng-Che
    Weret, Misganaw Adigo
    Huang, Chen-Jui
    Birhanu, Mulatu Kassie
    Liu, Tzu-Ching
    Huang, Chiu-Ping
    Soo, Yun-Liang
    Yang, Yaw-Wen
    Su, Wei-Nien
    Hwang, Bing-Joe
    [J]. ACS NANO, 2019, 13 (06) : 6720 - 6729