4.8 Article

Electro- and Photochemical Water Oxidation on Ligand-free Co3O4 Nanoparticles with Tunable Sizes

Journal

ACS CATALYSIS
Volume 3, Issue 3, Pages 383-388

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cs3007523

Keywords

water oxidation; photocatalysis; nanoparticles; cobalt oxide; size control

Funding

  1. BMBF
  2. National Basic Research Program of China [2013CB632405]
  3. National Natural Science Foundation of China [21033003, 21173043]

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Splitting of water to hydrogen and oxygen on colloidal catalysts is a promising method for future energy and chemistry cycles. The currently used high-performance oxides containing expensive elements (Ru, Ir) are progressively being replaced by more sustainable ones, such as Co3O4. Although the size of the nanoparticles determines their catalytic performance, the control over the particles diameter is often synthetically difficult to achieve. An additional obstacle is the presence of stabilizing agent, an organic molecule that blocks accessible surface-active centers. Herein, we present how precise control over size of the cobalt oxide nanoparticles (Co3O4 NPs), their colloidal stability, and the ligand-free surface affect overall performance of the photocatalytic oxygen evolution. We accordingly correlated the photochemical results with the electrochemical studies, concluding that accessibility of the active species on the particles' surface is crucial parameter in water oxidation.

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