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Characteristics of gradient-interface-structured ZnCdSSe quantum dots with modified interface and its application to quantum-dot-sensitized solar cells

Authors
Jeong, Da-WoonKim, Jae-YupSeo, Han WookLim, Kyoung-MookKo, Min JaeSeong, Tae-YeonKim, Bum Sung
Issue Date
31-1월-2018
Publisher
ELSEVIER
Keywords
Quantum dots; Solar cell; QDSCs; Gradient interface; Modified interface
Citation
APPLIED SURFACE SCIENCE, v.429, pp.16 - 22
Indexed
SCIE
SCOPUS
Journal Title
APPLIED SURFACE SCIENCE
Volume
429
Start Page
16
End Page
22
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/77919
DOI
10.1016/j.apsusc.2017.07.025
ISSN
0169-4332
Abstract
Colloidal quantum dots (QDs) are attractive materials for application in photovoltaics, LEDs, displays, and bio devices owing to their unique properties. In this study, we synthesized gradient-interface-structured ZnCdSSe QDs and modified the interface based on a thermodynamic simulation to investigate its optical and physical properties. In addition, the interface was modified by increasing the molar concentration of Se. QDs at the modified interface were applied to QD-sensitized solar cells, which showed a 25.5% increase in photoelectric conversion efficiency owing to the reduced electron confinement effect. The increase seems to be caused by the excited electrons being relatively easily transferred to the level of TiO2 owing to the reduced electron confinement effect. Consequently, the electron confinement effect was observed to be reduced by increasing the ZnSe (or Zn1-x,Cd-x Se)-rich phase at the interface. This means that, based on the thermodynamic simulation, the interface between the core QDs and the surface of the QDs can be controlled. The improvement of optical and electronic properties by controlling interfaces and surfaces during the synthesis of QDs, as reported in this work, can be useful for many applications beyond solar cells. (C) 2017 Elsevier B.V. All rights reserved.
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SEONG, TAE YEON
공과대학 (신소재공학부)
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