Issue 9, 2020

Controlled growth of Cu2−xS sheet-like nanoshells and Cu2−xS–CdS p–n junctions on Au nanorods with coupled plasmon resonances and enhanced photocatalytic activities

Abstract

In this study, we propose an approach to grow Cu2−xS sheet-like nanoshells on Au nanorods with the aid of Ag2S auxiliary templates. The Ag2S semi-shells are first grown on the side-surface of the Au nanorods and then, the Cu2−xS sheet-like nanoshells are selectively grown on the opposite side, which is beneficial for improving the controllability of the growth sites of the Cu2−xS sheet-like nanoshells. The Cu2−xS–CdS p–n junctions grown on Au nanorods are produced by replacing Ag+ with Cd2+ in the as-prepared Au/(Cu2−xS–Ag2S), so that Au/(Cu2−xS–CdS) heterorods with non-central symmetric shells of Cu2−xS–CdS p–n junctions are formed. By carefully adjusting the effective thickness of the Cu2−xS–CdS junctions, the optimized photocatalytic activity of the Au/(Cu2−xS–CdS) heterorods is obtained, and it is about 1.62 and 1.22-fold that of Au/Cu2−xS and Au/CdS, respectively. The improved photocatalytic performance of the Au/(Cu2−xS–CdS) heterorods is attributed to the effective charge carriers at the interfaces of CdS–Au, Cu2−xS–Au and the Cu2−xS–CdS p–n junction. Our findings provide a strategy for the optimal design of plasmon–exciton heterostructures with improved photocatalytic activity.

Graphical abstract: Controlled growth of Cu2−xS sheet-like nanoshells and Cu2−xS–CdS p–n junctions on Au nanorods with coupled plasmon resonances and enhanced photocatalytic activities

Supplementary files

Article information

Article type
Paper
Submitted
26 Nov 2019
Accepted
14 Jan 2020
First published
15 Jan 2020

J. Mater. Chem. C, 2020,8, 3058-3068

Controlled growth of Cu2−xS sheet-like nanoshells and Cu2−xS–CdS p–n junctions on Au nanorods with coupled plasmon resonances and enhanced photocatalytic activities

W. Wang, S. Ma, K. Chen, P. Wang, Q. Liu, L. Zhou and Q. Wang, J. Mater. Chem. C, 2020, 8, 3058 DOI: 10.1039/C9TC06472A

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