4.8 Review

Coordination chemistry in the design of heterogeneous photocatalysts

Journal

CHEMICAL SOCIETY REVIEWS
Volume 46, Issue 10, Pages 2799-2823

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6cs00727a

Keywords

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Funding

  1. 973 Program [2014CB848900]
  2. NSFC [21471141, U1532135]
  3. CAS Key Research Program of Frontier Sciences [QYZDB-SSW-SLH018]
  4. Recruitment Program of Global Experts
  5. CAS Hundred Talent Program
  6. Anhui Provincial Natural Science Foundation
  7. China Postdoctoral Science Foundation [BH2060000034, BH2060000046]
  8. Fundamental Research Funds for the Central Universities [WK2060190064]

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Heterogeneous catalysts have been widely used for photocatalysis, which is a highly important process for energy conversion, owing to their merits such as easy separation of catalysts from the reaction products and applicability to continuous chemical industry and recyclability. Yet, homogenous photocatalysis receives tremendous attention as it can offer a higher activity and selectivity with atomically dispersed catalytic sites and tunable light absorption. For this reason, there is a major trend to combine the advantages of both homogeneous and heterogeneous photocatalysts, in which coordination chemistry plays a role as the bridge. In this article, we aim to provide the first systematic review to give a clear picture of the recent progress from taking advantage of coordination chemistry. We specifically summarize the role of coordination chemistry as a versatile tool to engineer catalytically active sites, tune light harvesting and maneuver charge kinetics in heterogeneous photocatalysis. We then elaborate on the common fundamentals behind various materials systems, together with key spectroscopic characterization techniques and remaining challenges in this field. The typical applications of coordination chemistry in heterogeneous photocatalysis, including proton reduction, water oxidation, carbon dioxide reduction and organic reactions, are highlighted.

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