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Engineering two-dimensional metal oxides and chalcogenides for enhanced electro- and photocatalysis

期刊

SCIENCE BULLETIN
卷 66, 期 12, 页码 1228-1252

出版社

ELSEVIER
DOI: 10.1016/j.scib.2021.02.007

关键词

Two-dimensional materials; Metal oxides; Metal chalcogenides; Electrocatalysis; Photocatalysis

资金

  1. Australian Research Council (ARC) [DP180102752]
  2. ARC DECRA scheme [DE160100715]
  3. Shuguang Program - Shanghai Education Development Foundation [18SG035]
  4. Shanghai Municipal Education Commission [18SG035]
  5. State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University [KF2015]

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Two-dimensional metal oxides and chalcogenides are considered as promising electro- and photocatalysts, but their catalytic performances are relatively poor due to low electrical conductivity, few active sites, and fast charge recombination. Efforts have been made to improve their catalytic activities through rational structural design and chemical modification.
Two-dimensional (2D) metal oxides and chalcogenides (MOs & MCs) have been regarded as a new class of promising electro- and photocatalysts for many important chemical reactions such as hydrogen evolution reaction, CO2 reduction reaction and N-2 reduction reaction in virtue of their outstanding physicochemical properties. However, pristine 2D MOs & MCs generally show the relatively poor catalytic performances due to the low electrical conductivity, few active sites and fast charge recombination. Therefore, considerable efforts have been devoted to engineering 2D MOs & MCs by rational structural design and chemical modification to further improve the catalytic activities. Herein, we comprehensively review the recent advances for engineering technologies of 2D MOs & MCs, which are mainly focused on the intercalation, doping, defects creation, facet design and compositing with functional materials. Meanwhile, the relationship between morphological, physicochemical, electronic, and optical properties of 2D MOs & MCs and their electro- and photocatalytic performances is also systematically discussed. Finally, we further give the prospect and challenge of the field and possible future research directions, aiming to inspire more research for achieving high-performance 2D MOs & MCs catalysts in energy storage and conversion fields. (C) 2021 Science China Press. Published by Elsevier B.V.

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