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Nontypical Wulff-Shape Silicon Nanosheets with High Catalytic Activity

Authors
Lee, MinwooKim, TaehoonJang, Woosun이상섭So, Jae-PilJang, GyuminChoi, SangjinKim, Sungsoon배지홍Kim, TaeyoungPark, Hong-GyuMoon, JoohoSoon, AloysiusShim, Wooyoung
Issue Date
Oct-2023
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, v.145, no.41, pp 22620 - 22632
Pages
13
Journal Title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume
145
Number
41
Start Page
22620
End Page
22632
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/23086
DOI
10.1021/jacs.3c07768
ISSN
0002-7863
1520-5126
Abstract
Nanostructured silicon with an equilibrium shape has exhibited hydrogen evolution reaction activity mainly owing to its high surface area, which is distinct from that of bulk silicon. Such a Wulff shape of silicon favors low-surface-energy planes, resulting in silicon being an anisotropic and predictably faceted solid in which certain planes are favored, but this limits further improvement of the catalytic activity. Here, we introduce nanoporous silicon nanosheets that possess high-surface-energy crystal planes, leading to an unconventional Wulff shape that bolsters the catalytic activity. The high-index plane, uncommonly seen in the Wulff shape of bulk Si, has a band structure optimally aligned with the redox potential necessary for hydrogen generation, resulting in an apparent quantum yield (AQY) of 12.1% at a 400 nm wavelength. The enhanced light absorption in nanoporous silicon nanosheets also contributes to the high photocatalytic activity. Collectively, the strategy of making crystals with nontypical Wulff shapes can provide a route toward various classes of photocatalysts for hydrogen production.
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공과대학 (공과대학 신소재공학과)
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