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Plasmon-Driven Reaction Selectivity Tuning for Photoelectrochemical H2O2 Production

Authors
장규용Choi Young MoonRoh Seung HunWan ShipengZhang KanKwon Seok JoonKim Jung KyuPark Jong Hyeok
Issue Date
Dec-2023
Publisher
American Chemical Society
Citation
ACS Energy Letters, v.8, no.12, pp 5192 - 5200
Pages
9
Journal Title
ACS Energy Letters
Volume
8
Number
12
Start Page
5192
End Page
5200
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/23385
DOI
10.1021/acsenergylett.3c02172
ISSN
2380-8195
Abstract
Photoelectrochemical (PEC) H2O2 production has gained interest as a green, promising route to produce valuable chemicals. However, it suffers from low H2O2 Faradaic efficiency due to competing O-2 generation. Here, we propose a plasmon-driven band structure engineering strategy to thermodynamically regulate the product selectivity of a metal oxide based PEC photoanode. It is demonstrated that the plasmonic near-field generated by the periodically patterned Au nanosphere arrays (Au-PAT) effectively modulates the surface photovoltage and energy band structure of the BiVO4 photoanode. This modulation helps photoinduced charge carriers to satisfy the thermodynamic potential required to shift the water oxidation reaction (WOR) product from O-2 to high-value H2O2. As a result, BiVO4/Au-PAT achieves a H2O2 Faradaic efficiency approximately 3.3 times higher than that of pristine BiVO4. These findings suggest the effectiveness of external modulation, originating from a plasmonic near-field effect, in regulating the WOR pathway, providing an efficient and selective route to value-added PEC production.
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공과대학 (공과대학 화공생명공학과)
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