Dong Yifan, Cha Hyojung, Bristow Helen L, Lee Jinho, Kumar Aditi, Tuladhar Pabitra Shakya, McCulloch Iain, Bakulin Artem A, Durrant James R
Department of Chemistry and Centre for Processable Electronics, Imperial College London, London, W12 0BZ, United Kingdom.
Department of Hydrogen & Renewable Energy, Kyungpook National University, Daegu, 41566, Republic of Korea.
J Am Chem Soc. 2021 May 26;143(20):7599-7603. doi: 10.1021/jacs.1c00584. Epub 2021 Apr 23.
Minimizing the energy offset between the lowest exciton and charge-transfer (CT) states is a widely employed strategy to suppress the energy loss () in polymer:non-fullerene acceptor (NFA) organic solar cells (OSCs). In this work, transient absorption spectroscopy is employed to determine CT state lifetimes in a series of low energy loss polymer:NFA blends. The CT state lifetime is observed to show an inverse energy gap law dependence and decreases as the energy loss is reduced. This behavior is assigned to increased mixing/hybridization between these CT states and shorter-lived singlet excitons of the lower gap component as the energy offset Δ is reduced. This study highlights how achieving longer exciton and CT state lifetimes has the potential for further enhancement of OSC efficiencies.
将最低激子态与电荷转移(CT)态之间的能量偏移降至最低,是抑制聚合物:非富勒烯受体(NFA)有机太阳能电池(OSC)能量损失()的一种广泛采用的策略。在这项工作中,采用瞬态吸收光谱法来测定一系列低能量损失聚合物:NFA共混物中的CT态寿命。观察到CT态寿命呈现出反能隙定律依赖性,并且随着能量损失的降低而减小。这种行为归因于随着能量偏移Δ减小,这些CT态与较低能隙组分中寿命较短的单线态激子之间的混合/杂化增加。这项研究突出了实现更长的激子和CT态寿命如何具有进一步提高OSC效率的潜力。