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  5. Precise Colloidal Plasmonic Photocatalysts Constructed by Multistep Photodepositions

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Article
en
2020

Precise Colloidal Plasmonic Photocatalysts Constructed by Multistep Photodepositions

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en
2020
Vol 20 (12)
Vol. 20
DOI: 10.1021/acs.nanolett.0c03431

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Paul Alivisatos
Paul Alivisatos

University of Chicago

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Hyun-Dong Ha
Chang Yan
Georgios Katsoukis
+11 more

Abstract

Natural photosynthesis relies on a sophisticated charge transfer pathway among multiple components with precise spatial, energetic, and temporal organizations in the aqueous environment. It continues to inspire and challenge the design and fabrication of artificial multicomponent colloidal nanostructures for solar-to-fuel conversion. Herein, we introduce a plasmonic photocatalyst synthesized with colloidal methods with five integrated components including cocatalysts installed in orthogonal locations. The precise deposition of individual inorganic components on an Au/TiO2 nanodumbell nanostructure is enabled by photoreduction and photo-oxidation, which selectively occurs at the TiO2 tip sites and Au lateral sites, respectively. Under visible-light irradiation, the photocatalyst exhibited activity of oxygen evolution from water without scavengers. We demonstrate that each component is essential for improving the photocatalytic performance. In addition, mechanistic studies suggest that the photocatalytic reaction requires combining the hot charge carriers derived from exciting both the d-sp interband transition and the localized surface plasmon resonance of Au.

How to cite this publication

Hyun-Dong Ha, Chang Yan, Georgios Katsoukis, Gaurav A. Kamat, Ivan A. Moreno‐Hernandez, Heinz Frei, Paul Alivisatos, Hyun-Dong Ha, Chang Yan, Georgios Katsoukis, Gaurav A. Kamat, Ivan A. Moreno‐Hernandez, Heinz Frei, Paul Alivisatos (2020). Precise Colloidal Plasmonic Photocatalysts Constructed by Multistep Photodepositions. , 20(12), DOI: https://doi.org/10.1021/acs.nanolett.0c03431.

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Publication Details

Type

Article

Year

2020

Authors

14

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acs.nanolett.0c03431

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