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Investigation of Charge Carrier Behavior in High Performance Ternary Blend Polymer Solar Cells

Authors
Lee, Tack HoUddin, Mohammad AfsarZhong, ChengmeiKo, Seo-JinWalker, BrightKim, TaehyoYoon, Yung JinPark, Song YiHeeger, Alan J.Woo, Han YoungKim, Jin Young
Issue Date
12-Oct-2016
Publisher
WILEY-V C H VERLAG GMBH
Keywords
alloy-like polymers; parallel-like bulk heterojunctions; polymer solar cells; ternary blend systems; transient absorption spectroscopy
Citation
ADVANCED ENERGY MATERIALS, v.6, no.19
Indexed
SCIE
SCOPUS
Journal Title
ADVANCED ENERGY MATERIALS
Volume
6
Number
19
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/87180
DOI
10.1002/aenm.201600637
ISSN
1614-6832
Abstract
This study demonstrates high-performance, ternary-blend polymer solar cells by modifying a binary blend bulk heterojunction (PPDT2FBT:PC71BM) with the addition of a ternary component, PPDT2CNBT. PPDT2CNBT is designed to have complementary absorption and deeper frontier energy levels compared to PPDT2FBT, while being based on the same polymeric backbone. A power conversion efficiency of 9.46% is achieved via improvements in both short-circuit current density (J(SC)) and open-circuit voltage (V-OC). Interestingly, the V-OC increases with increasing the PPDT2CNBT content in ternary blends. In-depth studies using ultraviolet photoelectron spectroscopy and transient absorption spectroscopy indicate that the two polymers are not electronically homogeneous and function as discrete light harvesting species. The structural similarity between PPDT2CNBT and PPDT2FBT allows the merits of a ternary system to be fully utilized to enhance both J(SC) and V-OC without detriment to fill-factor via minimized disruption of semi-crystalline morphology of binary PPDT2FBT: PC (71) BM blend. Further, by careful analysis, charge carrier transport in this ternary blend is clearly verified to follow parallel-like behavior.
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