Active copper structures in ZnO-Cu interfacial catalysis: CO2 hydrogenation to methanol and reverse water-gas shift reactions

被引:0
|
作者
Wei Xiong
Zongfang Wu
Xuanye Chen
Jieqiong Ding
Aiai Ye
Wenhua Zhang
Weixin Huang
机构
[1] University of Science and Technology of China,Key Laboratory of Precision and Intelligent Chemistry, iChEM, Key Laboratory of Surface and Interface Chemistry and Energy Catalysis of Anhui Higher Education Institutes and School of Chemistry and Materials Sc
[2] University of Science and Technology of China,Hefei National Research Center for Physical Sciences at the Microscale
[3] Jiangxi Academy of Sciences,Research Institute of Applied Chemistry
来源
Science China Chemistry | 2024年 / 67卷
关键词
CO; hydrogenation; copper; zinc; reaction mechanisms; nanocrystals;
D O I
暂无
中图分类号
学科分类号
摘要
Cu-ZnO-based catalysts are widely used to catalyze the CO2 hydrogenation to methanol and reverse water-gas shift (RWGS) reactions. Herein, via a combined experimental and theoretical calculation study of various Cu nanocrystals (NCs) with well-defined Cu facets and corresponding ZnO/Cu NC inverse catalysts, we demonstrate the Cu{110} facets as the most active facet for ZnO-Cu interfacial catalysis in the CO2 hydrogenation to methanol with an apparent activation energy as low as 25.3±3 kJ mol−1 and the Cu{100} facets as the most active facet for both ZnO-Cu interfacial catalysis and Cu catalysis in the RWGS reaction. Although the ZnO-Cu interface is more active in catalyzing the RWGS reaction than the Cu surface, the RWGS reaction occurs mainly on the bare Cu surface of ZnO/Cu inverse catalysts under the CO2 hydrogenation to methanol instead of that at the ZnO-Cu interface. This fundamental understanding will greatly help to fabricate efficient Cu-ZnO-based catalysts for the CO2 hydrogenation to methanol.
引用
收藏
页码:715 / 723
页数:8
相关论文
共 50 条
  • [1] Active copper structures in ZnO-Cu interfacial catalysis: CO2 hydrogenation to methanol and reverse water-gas shift reactions
    Xiong, Wei
    Wu, Zongfang
    Chen, Xuanye
    Ding, Jieqiong
    Ye, Aiai
    Zhang, Wenhua
    Huang, Weixin
    SCIENCE CHINA-CHEMISTRY, 2024, 67 (02) : 715 - 723
  • [2] CATALYSIS Active sites for CO2 hydrogenation to methanol on Cu/ZnO catalysts
    Kattel, Shyam
    Ramirez, Pedro J.
    Chen, Jingguang G.
    Rodriguez, Jose A.
    Liu, Ping
    SCIENCE, 2017, 355 (6331) : 1296 - +
  • [3] Supported mesoporous Cu/CeO2-δ catalyst for CO2 reverse water-gas shift reaction to syngas
    Zhou, Guilin
    Xie, Fengqiong
    Deng, Lidan
    Zhang, Guizhi
    Xie, Hongmei
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (19) : 11380 - 11393
  • [4] Active Sites of Cu/ZnO-Based Catalysts for CO2 Hydrogenation to Methanol
    Al Salmi, Mustafa
    JOHNSON MATTHEY TECHNOLOGY REVIEW, 2024, 68 (04): : 490 - 502
  • [5] Preserving the Active Cu-ZnO Interface for Selective Hydrogenation of CO2 to Dimethyl Ether and Methanol
    Cui, Xiaojing
    Yan, Wenjun
    Yang, Huanhuan
    Shi, Ying
    Xue, Yanfeng
    Zhang, He
    Niu, Yulan
    Fan, Weibin
    Deng, Tiansheng
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 9 (07) : 2661 - 2672
  • [6] Comment on "Active sites for CO2 hydrogenation to methanol on Cu/ZnO catalysts"
    Nakamura, Junji
    Fujitani, Tadahiro
    Kuld, Sebastian
    Helveg, Stig
    Chorkendorff, Ib
    Sehested, Jens
    SCIENCE, 2017, 357 (6354)
  • [7] Optimized Pt-Co Alloy Nanoparticles for Reverse Water-Gas Shift Activation of CO2
    Szamosvolgyi, Akos
    Pito, Adam
    Efremova, Anastasiia
    Baan, Kornelia
    Kutus, Bence
    Suresh, Mutyala
    Sapi, Andras
    Szenti, Imre
    Kiss, Janos
    Kolonits, Tamas
    Fogarassy, Zsolt
    Pecz, Bela
    Kukovecz, Akos
    Konya, Zoltan
    ACS APPLIED NANO MATERIALS, 2024, 7 (09) : 9968 - 9977
  • [8] Exploiting Interfacial ZnO-Cu Nanocomposites in Metal-Organic Framework Derived Catalysts: Enhancement of Catalytic Activity for CO2 Hydrogenation
    Chen, Jiaxing
    Xu, Wanyin
    Zhang, Hao
    Gao, Junkuo
    Lin, Wenxin
    Li, Qianqian
    ACS APPLIED NANO MATERIALS, 2024, 7 (10) : 11285 - 11294
  • [9] Copper catalysts for CO2 hydrogenation to CO through reverse water-gas shift reaction for e-fuel production: Fundamentals, recent advances, and prospects
    Choi, Yeji
    Sim, Gi Dong
    Jung, Unho
    Park, Yongha
    Youn, Min Hye
    Chun, Dong Hyun
    Rhim, Geun Bae
    Kim, Kwang Young
    Koo, Kee Young
    CHEMICAL ENGINEERING JOURNAL, 2024, 492
  • [10] Molybdenum carbide clusters for thermal conversion of CO2 to CO via reverse water-gas shift reaction
    Ma, Ying
    Guo, Zhanglong
    Jiang, Qian
    Wu, Kuang-Hsu
    Gong, Huimin
    Liu, Yuefeng
    JOURNAL OF ENERGY CHEMISTRY, 2020, 50 (50): : 37 - 43