Cu-Fe bimetallic MOFs with long lifetime separated-state charge for enhancing selectivity for CO2 photoreduction to CH4

被引:0
|
作者
Yang, Huayong [1 ]
Liu, Guowei [1 ]
Zheng, Lixiao [1 ]
Zhang, Min [1 ]
Guan, Zhongjie [1 ]
Liu, Taifeng [1 ]
Yang, Jianjun [1 ]
机构
[1] National & Local Joint Engineering Research Center for Applied Technology of Hybrid Nanomaterials, Henan University, Kaifeng,475004, China
基金
中国国家自然科学基金;
关键词
Catalyst selectivity - Chemical activation - Copper - Efficiency - Electron affinity - Electron transitions - Iron - Metal-Organic Frameworks;
D O I
10.1016/j.apcatb.2024.124491
中图分类号
学科分类号
摘要
Improving the CO2 to CH4 conversion efficiency of Cu metal-organic frameworks (Cu-MOFs) catalysts is important for promoting carbon capture and utilization. In this work, a series of novel Cu-Fe bimetallic MOFs photocatalysts (Cu-BTB-Fe with 0.5 wt%, 1.0 wt%, 2.0 wt%, and 4.0 wt% of Fe; H3BTB = 1,3,5-tris(4-carboxyphenyl) benzene) were synthesized by a bimetallic site (Cu and Fe) design strategy in order to improve the electron-hole separation efficiency and CO2 adsorption activation. Findings indicated that the as-synthesized Cu-BTB-2 wt% Fe catalyst exhibited excellent catalytic performance for the conversion of CO2 to CH4 and CO under simulated sunlight irradiation, providing a yield of 32.20 μmol∙g−1∙h−1 and a selectivity of 69.24 % for CO2 to CH4 conversion as well as a yield of 14.29 μmol∙g−1∙h−1 for CO2 to CO conversion without liquid phase products. This is because the Cu-Fe bimetallic sites can continuously supply photoinduced electrons with long separated-state decay lifetime to efficiently activate CO2. Specifically, the Cu-BTB-Fe catalysts provided a high proportion of effective photoinduced electrons with long decay lifetime for the CO* hydrogenation process through a unique electron transfer mechanism, while the strong affinity between CO2 and [Cu2(COO)4]-Fe active units enabled high CO2 adsorption activation and rapid CO2 reduction. The present approach, hopefully, would help to establish feasible pathway for the development of novel highly selective Cu-based MOFs photocatalysts for CO2 photocatalytic reduction yielding CH4. © 2024
引用
下载
收藏
相关论文
共 50 条
  • [1] Simulations of Adsorption of CO2 and CH4 in MOFs: Effect of the Size and Charge Distribution on the Selectivity
    Sidi M. Maiga
    Mayra A. Medina
    Oluwaseyitan J. Durodola
    Silvina M. Gatica
    Journal of Low Temperature Physics, 2013, 172 : 274 - 288
  • [2] Simulations of Adsorption of CO2 and CH4 in MOFs: Effect of the Size and Charge Distribution on the Selectivity
    Maiga, Sidi M.
    Medina, Mayra A.
    Durodola, Oluwaseyitan J.
    Gatica, Silvina M.
    JOURNAL OF LOW TEMPERATURE PHYSICS, 2013, 172 (3-4) : 274 - 288
  • [3] Effects of amino functionality on uptake of CO2, CH4 and selectivity of CO2/CH4 on titanium based MOFs
    Rada, Zana Hassan
    Abid, Hussein Rasool
    Shang, Jin
    He, Yingdian
    Webley, Paul
    Liu, Shaomin
    Sun, Hongqi
    Wang, Shaobin
    FUEL, 2015, 160 : 318 - 327
  • [4] Cu-Fe bimetallic MOF enhances the selectivity of photocatalytic CO2 reduction toward CO production
    Yang, Huayong
    Zhang, Min
    Guan, Zhongjie
    Yang, Jianjun
    CATALYSIS SCIENCE & TECHNOLOGY, 2023, 13 (21) : 6238 - 6246
  • [5] Spatially-separated redox sites enabling selective atmospheric CO2 photoreduction to CH4
    Yang Wu
    Mingyu Wu
    Juncheng Zhu
    Xiaojing Zhang
    Jing Li
    Kai Zheng
    Jun Hu
    Chengyuan Liu
    Yang Pan
    Junfa Zhu
    Yongfu Sun
    Yi Xie
    Science China Chemistry, 2023, (07) : 1997 - 2003
  • [6] Spatially-separated redox sites enabling selective atmospheric CO2 photoreduction to CH4
    Wu, Yang
    Wu, Mingyu
    Zhu, Juncheng
    Zhang, Xiaojing
    Li, Jing
    Zheng, Kai
    Hu, Jun
    Liu, Chengyuan
    Pan, Yang
    Zhu, Junfa
    Sun, Yongfu
    Xie, Yi
    SCIENCE CHINA-CHEMISTRY, 2023, 66 (07) : 1997 - 2003
  • [7] Spatially-separated redox sites enabling selective atmospheric CO2 photoreduction to CH4
    Yang Wu
    Mingyu Wu
    Juncheng Zhu
    Xiaojing Zhang
    Jing Li
    Kai Zheng
    Jun Hu
    Chengyuan Liu
    Yang Pan
    Junfa Zhu
    Yongfu Sun
    Yi Xie
    Science China Chemistry, 2023, 66 : 1997 - 2003
  • [8] Reversing CO2 photoreduction selectivity from CO to near 100 % CH4 using cation vacancy-induced pair sites in thinned MOFs
    Ou, Man
    Bai, Fenghong
    Ye, Caichao
    Shao, Wenfan
    Liu, Xiaojing
    Zhang, Wenqing
    Dong, Chaoran
    Jin, Jie
    Wan, Shipeng
    Chen, Yuhui
    Zhang, Kan
    Park, Jong Hyeok
    Applied Catalysis B: Environmental, 2025, 365
  • [9] Graphitic Carbon Nitride with Dopant Induced Charge Localization for Enhanced Photoreduction of CO2 to CH4
    Fu, Junwei
    Liu, Kang
    Jiang, Kexin
    Li, Huangjingwei
    An, Pengda
    Li, Wenzhang
    Zhang, Ning
    Li, Hongmei
    Xu, Xiaowen
    Zhou, Haiqing
    Tang, Dongsheng
    Wang, Xiaoming
    Qiu, Xiaoqing
    Liu, Min
    ADVANCED SCIENCE, 2019, 6 (18)
  • [10] In Situ Loading of Cu Nanocrystals on CsCuCl3 for Selective Photoreduction of CO2 to CH4
    Zhao, Hai-Bing
    Huang, Jia-Nan
    Qin, Qi
    Chen, Hong-Yan
    Kuang, Dai-Bin
    SMALL, 2023, 19 (45)