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Efficient Si/SiOx/ITO Heterojunction Photoanode with an Amorphous and Porous NiOOH Catalyst formed by NiCl2 activation for Water Oxidation

Authors
Yoon, SanghwaLim, Jae-HongYoo, Bongyoung
Issue Date
May-2017
Publisher
Pergamon Press Ltd.
Keywords
Silicon-silicon oxide-indium tin oxide; heterojunction; Nickel chloride activation; Spray deposition; Active nickel-based catalyst
Citation
Electrochimica Acta, v.237, pp 37 - 43
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Electrochimica Acta
Volume
237
Start Page
37
End Page
43
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/9599
DOI
10.1016/j.electacta.2017.03.146
ISSN
0013-4686
1873-3859
Abstract
Solar-driven water splitting with silicon photoelectrodes exhibiting high solar-to-fuel conversion efficiency is a promising way for producing hydrogen fuel in the future. In this study, a heterojunction photoanode was fabricated by the deposition of a thin indium tin oxide (ITO) layer on n-type silicon/native SiOx. A NiCl2-containing precursor was sprayed on the top of the photoanode, affording a NiO-Cl-OH catalyst; this NiO-Cl-OH catalyst was then activated to form an amorphous and porous NiOOH (a-NiOOH) catalyst, which exhibited enhanced performance. The fabricated Si/SiOx/ITO/a-NiOOH photoanode exhibited a low photocurrent onset potential of similar to 0.98 V vs. RHE, a high saturation photocurrent density of 36.98 mA/cm(2), a photocurrent density of 27.4 mA/cm(2) at the standard oxidation potential of water, and a photovoltage as high as 545 mV under a solar illumination of 100 mW/cm(2). The photocurrent marginally decreased after 30 h. These results suggested that such heterojunctions can replace homogeneous p-n junctions formed from Si doping for high photovoltage generation. In addition, porous a-NiOOH can improve the electrocatalytic performance of Si-based photoanodes. (C) 2017 Elsevier Ltd. All rights reserved.
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ERICA 첨단융합대학 (ERICA 신소재·반도체공학전공)
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