Metal-Oxo Cluster Catalysts for Photocatalytic Water Splitting and Carbon Dioxide Reduction

被引:0
作者
Qing Lan
Sujuan Jin
Bohan Yang
Qiang Zhao
Chaolei Si
Haiquan Xie
Zhiming Zhang
机构
[1] Nanyang Normal University,Engineering Technology Research Center of Henan Province for Solar Catalysis, College of Chemistry and Pharmaceutical Engineering
[2] Tianjin University of Technology,Institute of New Energy Materials and Low Carbon Technology
来源
Transactions of Tianjin University | 2022年 / 28卷
关键词
Water splitting; Carbon dioxide photoreduction; Photocatalysis; Polynuclear metal-oxo clusters; Polyoxomatalate;
D O I
暂无
中图分类号
学科分类号
摘要
Photocatalytic water splitting and carbon dioxide photoreduction are considered effective strategies for alleviating the energy crisis and environmental pollution. Polynuclear metal-oxo clusters possess excellent electron storage/release ability and unique catalytic properties via intermetallic synergy, which enables them with great potential in environmentally friendly photosynthesis. Importantly, metal-oxo clusters with precise structure can not only act as high-efficiency catalysts but also provide well-defined structural models for exploring structure–activity relationships. In this review, we systematically summarize recent progress in the catalytic application of polynuclear metal-oxo clusters, including polyoxometalate clusters, low-cost transition metal clusters, and metal-oxo-cluster-based metal–organic frameworks for water splitting and CO2 reduction. Furthermore, we discuss the challenges and solutions to the problems of polynuclear metal-oxo clusters in photocatalysis.
引用
收藏
页码:214 / 225
页数:11
相关论文
共 279 条
  • [1] Sakakura T(2007)Transformation of carbon dioxide Chem Rev 107 2365-2387
  • [2] Choi JC(2014)Solar energy: springtime for the artificial leaf Nature 510 22-24
  • [3] Yasuda H(2016)CO Energy Environ Sci 9 2177-2196
  • [4] Marshall J(2014) photo-reduction: insights into CO Chem Soc Rev 43 7501-7519
  • [5] Chang XX(1972) activation and reaction on surfaces of photocatalysts Nature 238 37-38
  • [6] Wang T(2019)Molecular artificial photosynthesis Adv Mater Deerfield Beach Fla 31 e1808185-2616
  • [7] Gong JL(2022)Electrochemical photolysis of water at a semiconductor electrode Angew Chem Int Ed 61 e202109027-10878
  • [8] Berardi S(2019)Heterostructure of 1D Ta Chem 5 2605-3266
  • [9] Drouet S(2021)N Nat Commun 12 395-4129
  • [10] Francàs L(2019) nanorod/BaTaO Angew Chem Int Ed 58 10873-2016