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Plasmonic Nanocrystal Assembly-Semiconductor Hybrids for Boosting Visible to Near-Infrared Photocatalysis

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Abstract
Plasmonic metal-semiconductor hybrid photocatalysts have received much attention because of their wide light harvesting range and efficient charge carrier generation capability originating from plasmon energy transfer. Here, we introduce a plasmonic metal-semiconductor hybrid nanostructure consisting of a Au core-satellite assembly and crystalline TiO2. The formation of Au@TiO2-Au core-satellite assemblies using TiO2 as a spacer and the subsequent growth of outer TiO2 shells on the core-satellite assemblies, followed by calcination, successfully generated Au core-satellite assembly@TiO2 nanostructures. Exquisite control over the growth of the TiO2 interlayer enabled the regulation of the gap distance between the core and satellite Au nanocrystals within the same hybrid morphology. Due to the structural controllability of the present approach, the gap-distance-dependent plasmonic and photocatalytic properties of the hybrid nanostructures could be explored. The nanostructures possessing the most closely arranged Au nanocrystals showed high photocatalytic activity under visible to near-infrared light irradiation, which can be attributed to strong plasmon coupling between the core and satellite Au nanocrystals that can expedite the formation of intense plasmon energy and its transfer to TiO2.
Author(s)
Yonghyeon KimDae Han WiJong Wook HongSang Woo Han
Issued Date
2023
Type
Article
Keyword
AuTiO2core−satelliteplasmon couplingphotocatalytic hydrogen evolution
DOI
10.1021/acsnano.3c08182
URI
https://oak.ulsan.ac.kr/handle/2021.oak/17073
Publisher
ACS Nano
Language
영어
ISSN
1936-0851
Citation Volume
17
Citation Number
18
Citation Start Page
18641
Citation End Page
18651
Appears in Collections:
Natural Science > Chemistry
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