Interfacial Engineering of CdO-CdSe 3D Microarchitectures with insitu Photopolymerized PEDOT for an Enhanced Photovoltaic Performance

Authors
Lim, IseulShinde, Dipak V.Patil, Supriya A.Ahn, Do YoungLee, WonjooShrestha, Nabeen K.Lee, Joong KeeHan, Sung-Hwan
Issue Date
2015-07
Publisher
WILEY
Citation
PHOTOCHEMISTRY AND PHOTOBIOLOGY, v.91, no.4, pp.780 - 785
Abstract
In the present work, porous 3D CdO-microstructured electrode obtained by pyrolysis of 3D CdCO3 microstructures is self-sensitized with CdSe using an ion exchange reaction. After sensitization, an interfacial treatment of the CdO-CdSe interface is performed by depositing a thin film of PEDOT using a photoinduce polymerization route. The microstructured electrode before and after interfacial treatment is characterized using field-emission scanning microscope, energy dispersive X-ray analyzer, contact angle measurement, UV-Visible absorption spectrophotometer and X-ray photoelectron spectrometer. After constructing a liquid junction solar cell with a Pt counter electrode, the photovoltaic performance and interfacial charge transfer kinetics across the CdO-CdSe interface before and after PEDOT treatment are investigated. The results exhibit an improved interfacial charge-transfer resistance after the PEDOT treatment, which leads to enhance the short-circuit current by 15.81% and the power conversion efficiency by 19.82%.
Keywords
SENSITIZED SOLAR-CELLS; TICL4 TREATMENT; BUFFER LAYER; TIO2 FILMS; EFFICIENT; PHOTOANODES; DYNAMICS; SENSITIZED SOLAR-CELLS; TICL4 TREATMENT; BUFFER LAYER; TIO2 FILMS; EFFICIENT; PHOTOANODES; DYNAMICS; Interfacial Engineering; CdO?CdSe; 3D Microarchitectures; in situ Photopolymerized PEDOT
ISSN
0031-8655
URI
https://pubs.kist.re.kr/handle/201004/125305
DOI
10.1111/php.12429
Appears in Collections:
KIST Article > 2015
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