Polarization and built-in electric field improve the photocatalytic overall water splitting efficiency of C2N/ZnSe heterostructures

被引:17
|
作者
Jia, Minglei [1 ]
Ren, Fengzhu [1 ]
Chen, Xuefeng [1 ]
Han, Wenna [1 ]
Jin, Chao [1 ]
Peng, Chengxiao [1 ]
Wang, Bing [1 ]
机构
[1] Henan Univ, Sch Phys & Elect, Int Joint Res Lab New Energy Mat & Devices Henan P, Inst Computat Mat Sci, Kaifeng 475004, Peoples R China
基金
中国国家自然科学基金;
关键词
TOTAL-ENERGY CALCULATIONS; HYDROGEN EVOLUTION; VDW HETEROJUNCTION; MONOLAYER; C2N;
D O I
10.1016/j.ijhydene.2023.02.036
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
The type-II van der Waals heterostructure photocatalytic system is an ideal band alignment structure for photocatalysis, which the high separation efficiency of photo-induced carriers. By using density functional theory, we predicted two van der Waals (vdW) heterostructures, namely, C2N/ZnSe-ML (monolayer) and C2N/ZnSe-BL (bilayer), respectively. For the C2N/ZnSe-BL heterostructure, it has an intrinsic type-II band alignment, in which the built-in electric field formed at the interface accelerates the separation of photogenerated electrons-holes in heterostructure. The photogenerated electrons-holes have been accumulated near the conduction band minimum of C2N and the valence band maximum of ZnSe-BL, respectively, which the C2N/ZnSe-BL heterostructure is a type-II photocatalytic heterostructure. However, the C2N/ZnSe-ML heterostructure has a strong built-in electric field from C2N to ZnSe-ML because the ZnSe-ML is a polarized material with a polarized electric field inside, which form a type-II heterostructure and realizes the effective separation of photogenerated electron-holes under the action of built-in electric field. The C2N/ZnSe-X (ML, BL) heterostructures are both direct band-gap semiconductors and they can harvest sunlight efficiently almost in the range of the solar spectrum. These distinguishing features confirm that the C2N/ZnSe-X (ML, BL) heterostructures have promising prospects in the sphere of photocatalysis for the separation of photogenerated electron-holes.(c) 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:19554 / 19563
页数:10
相关论文
共 50 条
  • [21] Photocatalytic activation of sodium percarbonate by C3N5/C2N3 homojunction for rapid water purification: Efficient electron transfer of built-in electric field
    Zhang, Hongda
    Zhao, Yunzhe
    Xu, Guanghui
    Li, Haiyan
    Yu, Yong
    CHEMICAL ENGINEERING JOURNAL, 2024, 491
  • [22] Optimizing heterointerface of NiCoP-Co/MXene with regulated charge distribution via built-in electric field for efficient overall water-splitting
    Yan, Liang
    Chen, Yong-Hang
    Xie, Jia-Chun
    Li, Hao
    RARE METALS, 2025, 44 (02) : 1067 - 1083
  • [23] Strain-Induced Enhanced Performance in 2D C2N/MoS2 Heterostructures for Photocatalytic Water Splitting: A Meta-GGA Study
    Das, Soumendra Kumar
    Patra, Lokanath
    Samal, Prasanjit
    Sahoo, Pratap K.
    ACS APPLIED ELECTRONIC MATERIALS, 2024, 6 (02) : 1415 - 1423
  • [24] Enhancing photocatalytic water splitting via GeC/SGaSnP Z-scheme heterojunctions with built-in electric fields
    Lou, Wenhua
    Liu, Gang
    Ma, Xiaoguang
    Yang, Chuanlu
    Feng, Lixun
    Liu, Ying
    Gao, Xiaochun
    JOURNAL OF MATERIALS CHEMISTRY A, 2025, 13 (06) : 4356 - 4366
  • [25] Ag2O@BiFeO3 heterostructure composite coupling built-in electric field with piezopotential for enhanced photocatalytic pollutant degradation and photoelectrochemical water splitting
    Chen, Dong-Hwang
    Tran, Van-Ty
    APPLIED SURFACE SCIENCE, 2023, 625
  • [26] Built-in electric field and core-shell structure of the reconstructed sulfide heterojunction accelerated water splitting
    Yu, Shudi
    Li, Jie
    Yin, Jiongting
    Liang, Wanyu
    Zhang, Yangping
    Liu, Tianpeng
    Hu, Mengyun
    Wang, Yong
    Wu, Zhengying
    Zhang, Yuefan
    Du, Yukou
    CHINESE CHEMICAL LETTERS, 2024, 35 (12)
  • [27] Built-in electric field and core-shell structure of the reconstructed sulfide heterojunction accelerated water splitting
    Shudi Yu
    Jie Li
    Jiongting Yin
    Wanyu Liang
    Yangping Zhang
    Tianpeng Liu
    Mengyun Hu
    Yong Wang
    Zhengying Wu
    Yuefan Zhang
    Yukou Du
    Chinese Chemical Letters, 2024, 35 (12) : 166 - 172
  • [28] Two-dimensional C20-based monolayers and heterostructures for photocatalytic overall water splitting
    Liu, Miao
    Yang, Chuan-Lu
    Li, Xiaohu
    Zhan, Li-Bo
    Li, Yongqing
    NPJ 2D MATERIALS AND APPLICATIONS, 2025, 9 (01)
  • [29] Gradient tungsten-doped Bi3TiNbO9 ferroelectric photocatalysts with additional built-in electric field for efficient overall water splitting
    Huang, Jie
    Kang, Yuyang
    Liu, Jianan
    Yao, Tingting
    Qiu, Jianhang
    Du, Peipei
    Huang, Biaohong
    Hu, Weijin
    Liang, Yan
    Xie, Tengfeng
    Chen, Chunlin
    Yin, Li-Chang
    Wang, Lianzhou
    Cheng, Hui-Ming
    Liu, Gang
    NATURE COMMUNICATIONS, 2023, 14 (01)
  • [30] Gradient tungsten-doped Bi3TiNbO9 ferroelectric photocatalysts with additional built-in electric field for efficient overall water splitting
    Jie Huang
    Yuyang Kang
    Jianan Liu
    Tingting Yao
    Jianhang Qiu
    Peipei Du
    Biaohong Huang
    Weijin Hu
    Yan Liang
    Tengfeng Xie
    Chunlin Chen
    Li-Chang Yin
    Lianzhou Wang
    Hui-Ming Cheng
    Gang Liu
    Nature Communications, 14