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Cited 39 time in webofscience Cited 39 time in scopus
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Solution-Processed Organic Solar Cells with High Open-Circuit Voltage of 1.3 V and Low Non-Radiative Voltage Loss of 0.16 V

Authors
An, NingCai, YunhaoWu, HongboTang, AilingZhang, KangningHao, XiaotaoMa, ZaifeiGuo, QiangRyu, Hwa SookWoo, Han YoungSun, YanmingZhou, Erjun
Issue Date
10월-2020
Publisher
WILEY-V C H VERLAG GMBH
Keywords
benzotriazole; chlorination; non-fullerene acceptors; non-radiative voltage loss; open-circuit voltage
Citation
ADVANCED MATERIALS, v.32, no.39
Indexed
SCIE
SCOPUS
Journal Title
ADVANCED MATERIALS
Volume
32
Number
39
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/52634
DOI
10.1002/adma.202002122
ISSN
0935-9648
Abstract
Compared with inorganic or perovskite solar cells, the relatively large non-radiative recombination voltage losses (Delta Vnon-rad) in organic solar cells (OSCs) limit the improvement of the open-circuit voltage (V-oc). Herein, OSCs are fabricated by adopting two pairs of D-pi-A polymers (PBT1-C/PBT1-C-2Cl and PBDB-T/PBDB-T-2Cl) as electron donors and a wide-bandgap molecule BTA3 as the electron acceptor. In these blends, a charge-transfer state energy (E-CT) as high as 1.70-1.76 eV is achieved, leading to small energetic differences between the singlet excited states and charge-transfer states (Delta E-CT approximate to 0.1 eV). In addition, after introducing chlorine atoms into the pi-bridge or the side chain of benzodithiophene (BDT) unit, electroluminescence external quantum efficiencies as high as 1.9 x 10(-3)and 1.0 x 10(-3)are realized in OSCs based on PBTI-C-2Cl and PBDB-T-2Cl, respectively. Their corresponding Delta V(non-rad)are 0.16 and 0.17 V, which are lower than those of OSCs based on the analog polymers without a chlorine atom (0.21 and 0.24 V for PBT1-C and PBDB-T, respectively), resulting in highV(oc)of 1.3 V. The Delta V(non-rad)of 0.16 V andV(oc)of 1.3 V achieved in PBT1-C-2Cl:BTA3 OSCs are thought to represent the best values for solution-processed OSCs reported in the literature so far.
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