4.8 Article

Pentanuclear iron catalysts for water oxidation: substituents provide two routes to control onset potentials

Journal

CHEMICAL SCIENCE
Volume 10, Issue 17, Pages 4628-4639

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9sc00678h

Keywords

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Funding

  1. Japan Society for the Promotion of Science [16H04125, 15H05480, 17K19185]
  2. JST ACT-C, Japan [JPMJCR12YH]
  3. [17H06444]
  4. [17H05391]
  5. Grants-in-Aid for Scientific Research [15H05480, 17K19185, 16H04125] Funding Source: KAKEN

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The development of robust and efficient molecular catalysts based on earth-abundant transition metals for water oxidation reactions is a challenging research target. Our group recently demonstrated the high activity and stability of a pentairon-based water oxidation electrocatalyst (M. Okamura, M. Kondo, R. Kuga, Y. Kurashige, T. Yanai, S. Hayami, V. K. K. Praneeth, M. Yoshida, K. Yoneda, S. Kawata and S. Masaoka, Nature, 2016, 530, 465-468). However, the development of strategies to decrease onset potentials for catalysis remains challenging. In this article, we report the construction of a series of pentanuclear iron complexes by introducing electron-donating (methyl) and electron-withdrawing (bromo) substituents on the ligand. Two newly synthesized complexes exhibited five reversible redox processes, similar to what is seen with the parent complex. These complexes can also serve as homogeneous catalysts for water oxidation reactions, and the faradaic efficiencies of the reactions were high. Additionally, the onset potentials of the newly developed complexes were lower than that of the parent complex. Mechanistic insights revealed that there are two methods for decreasing onset potentials: control of the redox potentials of the pentairon complex and control of the reaction mechanism.

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