Amorphous transitional metal borides as substitutes for Pt cocatalysts for photocatalytic water splitting

被引:144
|
作者
Li, Lihua [1 ]
Deng, Zexiang [1 ]
Yu, Lili [1 ]
Lin, Zhaoyong [1 ]
Wang, Weiliang [1 ]
Yang, Guowei [1 ]
机构
[1] Sun Yat Sen Univ, State Key Lab Optoelect Mat & Technol, Nanotechnol Res Ctr, Sch Mat Sci & Engn,Sch Phys, Guangzhou 510275, Guangdong, Peoples R China
基金
中国国家自然科学基金;
关键词
Amorphous transitional metal boride; Photocatalyst; Water-splitting; Cocatalyst; VISIBLE-LIGHT; H-2; EVOLUTION; HYDROGEN-PRODUCTION; LOW-TEMPERATURE; EFFICIENT; CATALYST; NICKEL; PERFORMANCE; COMPOSITE; ALLOY;
D O I
10.1016/j.nanoen.2016.06.054
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Cocatalysts for H-2 production are often made from noble metals, which are expensive and rare. Cocatalysts made from cheap and abundant elements are therefore highly desirable for economically viable H-2 production. Here, we demonstrate that amorphous transitional metal borides (TMBs) made from abundant materials and costing less than 0.1% of the price of Pt cocatalysts are effective substitutes for Pt-based cocatalysts and result in superior H-2 production via water-splitting under visible light irradiation. Under visible-light driven photocatalytic water-splitting, using TMBs as cocatalysts for nanostructured NiCoB/CdS composites achieved an extraordinary H-2 production of 144.8 mmol h(-1) g(-1), up to 36 times greater than that observed when using CdS alone. The apparent quantum efficiency was measured as 97.42% at 500 nm, which is the highest value reported for CdS photocatalysts. The hydrogen atom adsorption energy (Delta E(H)) and hydrogen molecule adsorption energy (Delta E(H-2)) of NiB, NiCoB and Pt have been calculated for the first time. Compared with Pt cocatalyst, amorphous TMBs cocatalysts more readily adsorb hydrogen protons and desorb molecular hydrogen during the photocatalytic process. Superior performance of TMBs as cocatalyst, much better than Pt, can be attributed to its powerful trapping electrons ability and highly adsorption of protons. These findings provide a straightforward and effective route to produce cheap and efficient cocatalysts for large-scale water splitting. (C) 2016 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:103 / 113
页数:11
相关论文
共 50 条
  • [1] Transition-Metal-Based Cocatalysts for Photocatalytic Water Splitting
    Zhao, Hui
    Jian, Liang
    Gong, Ming
    Jing, Mengyang
    Li, Haixia
    Mao, Qinyi
    Lu, Tongbin
    Guo, Yinxin
    Ji, Rong
    Chi, Wenwen
    Dong, Yuming
    Zhu, Yongfa
    SMALL STRUCTURES, 2022, 3 (07):
  • [2] Design and Construction of Cocatalysts for Photocatalytic Water Splitting
    Sun, Shangcong
    Zhang, Xuya
    Liu, Xianlong
    Pan, Lun
    Zhang, Xiangwen
    Zou, Jijun
    ACTA PHYSICO-CHIMICA SINICA, 2020, 36 (03)
  • [3] Size effects of cocatalysts in photoelectrochemical and photocatalytic water splitting
    Pokrant, S.
    Dilger, S.
    Landsmann, S.
    Trottmann, M.
    MATERIALS TODAY ENERGY, 2017, 5 : 158 - 163
  • [4] Cocatalysts for Photocatalytic Overall Water Splitting: A Mini Review
    Tian, Li
    Guan, Xiangjiu
    Zong, Shichao
    Dai, Anna
    Qu, Jingkuo
    CATALYSTS, 2023, 13 (02)
  • [5] Positively charged Pt-based cocatalysts: an orientation for achieving efficient photocatalytic water splitting
    Liu, Jinze
    Li, Yuhang
    Zhou, Xiaodong
    Jiang, Hao
    Yang, Hua Gui
    Li, Chunzhong
    JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (01) : 17 - 26
  • [6] The roles and mechanism of cocatalysts in photocatalytic water splitting to produce hydrogen
    Xiao, Nan
    Li, Songsong
    Li, Xuli
    Ge, Lei
    Gao, Yangqin
    Li, Ning
    CHINESE JOURNAL OF CATALYSIS, 2020, 41 (04) : 642 - 671
  • [7] Tungsten Carbide Nanoparticles as Efficient Cocatalysts for Photocatalytic Overall Water Splitting
    Garcia-Esparza, Angel T.
    Cha, Dongkyu
    Ou, Yiwei
    Kubota, Jun
    Domen, Kazunari
    Takanabe, Kazuhiro
    CHEMSUSCHEM, 2013, 6 (01) : 168 - 181
  • [8] Beyond Reduction Cocatalysts: Critical Role of Metal Cocatalysts in Photocatalytic Oxidation of Methane with Water
    Saito, Hikaru
    Sato, Hiromasa
    Higashi, Taisuke
    Sugimoto, Toshiki
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (33)
  • [9] Amorphous NiP as cocatalyst for photocatalytic water splitting
    Xie, Juan
    Yang, Chen
    Duan, Ming
    Tang, Junlei
    Wang, Yingying
    Wang, Hu
    Courtois, Jeremie
    CERAMICS INTERNATIONAL, 2018, 44 (05) : 5459 - 5465
  • [10] Controlled colloidal metal nanoparticles and nanoclusters: recent applications as cocatalysts for improving photocatalytic water-splitting activity
    Kawawaki, Tokuhisa
    Mori, Yutaro
    Wakamatsu, Kosuke
    Ozaki, Shuhei
    Kawachi, Masanobu
    Hossain, Sakiat
    Negishi, Yuichi
    JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (32) : 16081 - 16113