4.6 Article

Intramolecular hydroxyl nucleophilic attack pathway by a polymeric water oxidation catalyst with single cobalt sites

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NATURE CATALYSIS
卷 5, 期 5, 页码 414-429

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NATURE PORTFOLIO
DOI: 10.1038/s41929-022-00783-6

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资金

  1. National Natural Science Foundation of China [22172011, 22088102]
  2. Swedish Research Council [2017-00935]
  3. K & A Wallenberg Foundation [KAW 2016.0072]
  4. China Scholarship Council
  5. Zhejiang Province Selected Funding for Postdoctoral Research Projects [ZJ2021001]

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This study reports a molecularly well-defined water oxidation catalyst (WOC) with superior activity under alkaline and near-neutral conditions. By combining experimental and theoretical results, a pH-dependent O-O bond formation pathway was proposed, and the rate-determining step was identified. This research provides significant insights into the crucial role of electrolyte pH in water oxidation catalysis.
Exploration of efficient water oxidation catalysts (WOCs) is the primary challenge in conversion of renewable energy into fuels. Here we report a molecularly well-defined heterogeneous WOC with Aza-fused, pi-conjugated, microporous polymer (Aza-CMP) coordinated single cobalt sites (Aza-CMP-Co). The single cobalt sites in Aza-CMP-Co exhibited superior activity under alkaline and near-neutral conditions. Moreover, the molecular nature of the isolated catalytic sites makes Aza-CMP-Co a reliable model for studying the heterogeneous water oxidation mechanism. By a combination of experimental and theoretical results, a pH-dependent nucleophilic attack pathway for O-O bond formation was proposed. Under alkaline conditions, the intramolecular hydroxyl nucleophilic attack (IHNA) process with which the adjacent -OH group nucleophilically attacks Co4+=O was identified as the rate-determining step. This process leads to lower activation energy and accelerated kinetics than those of the intermolecular water nucleophilic attack (WNA) pathway. This study provides significant insights into the crucial function of electrolyte pH in water oxidation catalysis and enhancement of water oxidation activity by regulation of the IHNA pathway.

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