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Ni-core CuO-shell fibers produced by electrospinning and electroplating as efficient photocathode materials for solar water splitting

Authors
Jo, Hong-SeokKim, Min-WooJoshi, BhavanaSamuel, EdmundYoon, HyunSwihart, Mark T.Yoon, Sam S.
Issue Date
28-5월-2018
Publisher
ROYAL SOC CHEMISTRY
Citation
NANOSCALE, v.10, no.20, pp.9720 - 9728
Indexed
SCIE
SCOPUS
Journal Title
NANOSCALE
Volume
10
Number
20
Start Page
9720
End Page
9728
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/75485
DOI
10.1039/C8NR01070F
ISSN
2040-3364
Abstract
Charge recombination in CuO photocathodes inhibits efficient electron flow and limits the photo-electrochemical performance of these cathodes for solar water splitting. To circumvent this shortcoming, we introduce highly conductive Ni/CuO core-shell structured fibers. The photocurrent density (PCD) achieved with these core-shell fibers exceeded that of fibers without a Ni core by a factor of 2.6. The PCD enhancement arises from increased acceptor concentration and electron-hole recombination time, as measured by electrochemical impedance spectroscopy. These core-shell nanofibers were fabricated via electrospinning and electroplating. First, a polyacrylonitrile fiber was electrospun and then seeded with metal via sputtering. Second, electroplating was used to encase and metalize the fiber with Ni and Cu. Finally, the outermost Cu shell was oxidized to CuO, which is an effective photocathode for solar water splitting. The Ni-CuO, core-shell layers were characterized by scanning electron microscopy, elemental mapping, X-ray diffraction, and X-ray photoelectron spectroscopy. The core Ni content and number of core-shell fibers per area were optimized through parametric studies.
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공과대학 (기계공학부)
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