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Pyramidal Metal-dielectric hybrid-structure geometry with an asymmetric TiO2 layer for broadband light absorption and photocatalytic applications

Authors
Kim, Hee JunJun, JunhoChoi, Hak-JongKwon, HyunahPark, JunhaSeo, ChangwonKim, Jong KyuShin, JonghwaKim, JeongyongLee, HeonBaik, Jeong Min
Issue Date
11월-2018
Publisher
ELSEVIER
Keywords
Nanoimprinting lithography; Metal-dielectric hybrid structure; Asymmetric TiO2; Broadband light absorption; Photoelectrodes
Citation
NANO ENERGY, v.53, pp.468 - 474
Indexed
SCIE
SCOPUS
Journal Title
NANO ENERGY
Volume
53
Start Page
468
End Page
474
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/71951
DOI
10.1016/j.nanoen.2018.08.074
ISSN
2211-2855
Abstract
In this study, a pyramidal metal-dielectric hybrid-structure geometry with high broadband light absorption was prepared and applied as a photoelectrode for solar water oxidation. TiO2 was obliquely deposited on the pyramidal Au film, leading to asymmetrically thick pyramids. With the decoration of Au nanoparticles, the light absorption in the entire UV-visible region significantly increased to > 90%, which was examined by three-dimensional finite-difference time-domain simulations and confirmed by confocal spectral mapping techniques. By the introduction of Ti as the insertion layer, the alignment of bands at the TiO2/Au film interface was tuned, thereby promoting the separation of photogenerated carriers via the efficient transport of electrons to the Au film. This transport led to a remarkable enhancement in the photocurrent density (similar to 0.16 mA/cm(2)) by 3.4 times compared to that observed for a flat TiO2 layer.
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공과대학 (신소재공학부)
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