4.8 Review

Advances in Understanding the Electrocatalytic Reconstruction Chemistry of Coordination Compounds

Journal

SMALL
Volume 17, Issue 45, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202100629

Keywords

actual contributors; coordination compounds; electrocatalysis; influence factors; reconstruction parameters

Funding

  1. National Key Research and Development Program of China [2020YFA0715000, 2016YFA0202603]
  2. National Natural Science Foundation of China [51832004, 51521001]
  3. Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory [XHT2020-003]

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Recent research focuses on the reconstruction phenomena and performance correlation of coordination compounds acting as catalysts, with factors such as electronic structure, solution pH and temperature influencing the reconstruction processes. Characterization techniques are employed for studying the reconstruction mechanisms.
Coordination compounds including mainstream metal-organic frameworks and Prussian blue analogues receive extensive researches when they directly serve as electrocatalysts. Their reconstruction phenomena, that are closely associated with actual contributions and intrinsic catalytic mechanisms, are expected to be well summarized. Here, the recent advances in understanding reconstruction chemistry of coordination compounds are reviewed, including their main classifications and structural properties, reconstruction phenomena in electrocatalysis (e.g., oxygen/hydrogen evolution reaction, CO2 reduction), influence factors of reconstruction parameters (e.g., reconstruction rate and reconstruction degree), and reconstruction-performance correlation. It is outlined that the reconstruction processes are influenced by electronic structure of coordination compounds, pH and temperature of testing solution, and applied potentials. The characterization techniques reflecting the evolution information before and after catalysis are also introduced for reconstruction-related mechanistic study. Finally, some challenges and outlooks on reconstruction investigations of coordination compounds are proposed, and the necessity of studying and understanding of these themes under actual working conditions of devices is highlighted.

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