Interface engineering of a GaN/In2O3 heterostructure for highly efficient electrocatalytic CO2 reduction to formate

被引:5
|
作者
Li, Xuan [1 ]
Jiang, Xingxing [2 ]
Kong, Yan [1 ]
Sun, Jianju [2 ]
Hu, Qi [2 ]
Chai, Xiaoyan [2 ]
Yang, Hengpan [2 ]
He, Chuanxin [2 ]
机构
[1] Univ Sci & Technol China, Dept Chem Phys, Hefei 230026, Anhui, Peoples R China
[2] Shenzhen Univ, Coll Chem & Environm Engn, Shenzhen Key Lab Funct Polymer, Shenzhen 518060, Guangdong, Peoples R China
来源
CHINESE JOURNAL OF CATALYSIS | 2023年 / 50卷
基金
中国国家自然科学基金;
关键词
Electrocatalytic CO 2 reduction reaction; Interface; Formate; Eutectic gallium -indium; SURFACE RECONSTRUCTION; LIQUID-METAL; ELECTROREDUCTION; CATALYSTS; PHASE;
D O I
10.1016/S1872-2067(23)64455-9
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Electrocatalytic CO2 reduction reaction (eCO2RR) to obtain formate is a promising method to con-sume CO2 and alleviate the energy crisis. Indium-based electrocatalysts have demonstrated consid-erable potential to produce formate. However, their unsatisfactory long-term stability and selectiv-ity restrict their widespread application. In this study, a heterostructure of GaN-and In2O3-encapsulated porous carbon nanofibers was constructed via electrospinning and the phase transition of eutectic gallium-indium during calcination. The GaN and In2O3 nanoparti-cle-encapsulated porous carbon nanofibers, when used as electrocatalysts for eCO2RR, displayed high formate selectivity with a faradaic efficiency of 87% and maximum partial current density of 29.7 mA cm-2 in a 0.5 mol L-1 KHCO3 aqueous solution. The existence of the interface can cause a positive shift in the In 3d binding energy, leading to electronic redistribution. Moreover, the GaN component induced a higher proportion of O-vacancy sites in the In2O3 phase, resulting in improved selectivity for CO2-to-formate. In-situ Raman experiments and density functional theory calculations revealed that the interface between GaN and In2O3 could lower the adsorption energy of the key intermediates for formate production, thus providing superior eCO2RR performance. In addition, the framework of the porous carbon nanofibers exhibited a large electrochemically active surface area, which enabled the full exposure of the active sites. This study highlights the cooperation be-tween GaN and In2O3 components and provides new insights into the rational design of catalysts with high CO2-to-formate conversion efficiencies.& COPY; 2023, Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:314 / 323
页数:10
相关论文
共 50 条
  • [1] Interfacial engineering of In2O3/InN heterostructure with promoted charge transfer for highly efficient CO2 reduction to formate
    Zhao, Xiaoli
    Huang, Ming
    Deng, Bangwei
    Li, Kanglu
    Li, Fei
    Dong, Fan
    CHEMICAL ENGINEERING JOURNAL, 2022, 437
  • [2] Bi-Doped In2O3 Nanofiber for Efficient Electrocatalytic CO2 Reduction
    Zhao, Yuanxiang
    Lv, Xinchun
    Zhu, Zifan
    Yang, Chen
    Ma, Xintao
    Sun, Yifei
    Alodhayb, Abdullah N.
    Yi, Xiaodong
    Shi, Wei
    Chen, Zhou
    CHEMCATCHEM, 2024,
  • [3] Ce Promotion of In2O3 for Electrochemical Reduction of CO2 to Formate
    Wissink, Tim
    Rollier, Floriane A.
    Muravev, Valery
    Heinrichs, Jason M. J. J.
    van de Poll, Rim C. J.
    Zhu, Jiadong
    Anastasiadou, Dimitra
    Kosinov, Nikolay
    Figueiredo, Marta C.
    Hensen, Emiel J. M.
    ACS CATALYSIS, 2024, 14 (22): : 16589 - 16604
  • [4] Nanosized LaInO3 perovskite for efficient electrocatalytic reduction of CO2 to formate
    Zhu, Yuxiao
    Zhou, Wei
    Dong, Zichao
    Zhang, Xinxin
    Chen, Zhipeng
    Liu, Ziyong
    Li, Fuli
    Fan, Jingxin
    Liu, Licheng
    Jiao, Mingyang
    JOURNAL OF CO2 UTILIZATION, 2023, 68
  • [5] Bi2O3/BiO2 Nanoheterojunction for Highly Efficient Electrocatalytic CO2 Reduction to Formate
    Feng, Xuezhen
    Zou, Haiyuan
    Zheng, Renji
    Wei, Wenfei
    Wang, Ranhao
    Zou, Wensong
    Lim, Gukhyun
    Hong, Jihyun
    Duan, Lele
    Chen, Hong
    NANO LETTERS, 2022, 22 (04) : 1656 - 1664
  • [6] Porous Bi Nanosheets Derived from β-Bi2O3 for Efficient Electrocatalytic CO2 Reduction to Formate
    Pang, Yongyu
    Xie, Ruikuan
    Xie, Huan
    Lan, Shaojie
    Jiang, Taiwen
    Chai, Guoliang
    ACS APPLIED MATERIALS & INTERFACES, 2024, 16 (32) : 42109 - 42117
  • [7] Engineering Hydrogen Generation Sites to Promote Electrocatalytic CO2 Reduction to Formate
    Guo, Xinyue
    Xu, Si-Min
    Zhou, Hua
    Ren, Yue
    Ge, Ruixiang
    Xu, Ming
    Zheng, Lirong
    Kong, Xianggui
    Shao, Mingfei
    Li, Zhenhua
    Duan, Haohong
    ACS CATALYSIS, 2022, 12 (17) : 10551 - 10559
  • [8] A Nanocomposite of Bismuth Clusters and Bi2O2CO3 Sheets for Highly Efficient Electrocatalytic Reduction of CO2 to Formate
    Lin, Li
    He, Xiaoyang
    Zhang, Xia-Guang
    Ma, Wenchao
    Zhang, Biao
    Wei, Diye
    Xie, Shunji
    Zhang, Qinghong
    Yi, Xiaodong
    Wang, Ye
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (03)
  • [9] Unveiling in situ evolved In/In2O3-x heterostructure as the active phase of In2O3 toward efficient electroreduction of CO2 to formate
    Liang, Yu
    Zhou, Wei
    Shi, Yanmei
    Liu, Cuibo
    Zhang, Bin
    SCIENCE BULLETIN, 2020, 65 (18) : 1547 - 1554
  • [10] In Situ Bismuth Nanosheet Assembly for Highly Selective Electrocatalytic CO2 Reduction to Formate
    Peng, Chan-Juan
    Wu, Xin-Tao
    Zeng, Guang
    Zhu, Qi-Long
    CHEMISTRY-AN ASIAN JOURNAL, 2021, 16 (12) : 1539 - 1544