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氮氧自由基共轭聚合物作为添加剂以减少有机太阳能电池中的非辐射能量损失。

A Nitroxide Radical Conjugated Polymer as an Additive to Reduce Nonradiative Energy Loss in Organic Solar Cells.

机构信息

Organic Semiconductor Materials and Applied Technology Research Centre of Gansu Province, School of Materials Science and Engineering, Lanzhou Jiaotong University, Lanzhou, 730070, P. R. China.

National Green Coating Equipment and Technology Research Centre, Lanzhou Jiaotong University, Lanzhou, 730070, P. R. China.

出版信息

Adv Mater. 2023 Jun;35(23):e2212084. doi: 10.1002/adma.202212084. Epub 2023 Apr 27.

Abstract

Nonfullerene-acceptor-based organic solar cells (NFA-OSCs) are now set off to the 20% power conversion efficiency milestone. To achieve this, minimizing all loss channels, including nonradiative photovoltage losses, seems a necessity. Nonradiative recombination, to a great extent, is known to be an inherent material property due to vibrationally induced decay of charge-transfer (CT) states or their back electron transfer to the triplet excitons. Herein, it is shown that the use of a new conjugated nitroxide radical polymer with 2,2,6,6-tetramethyl piperidine-1-oxyl side groups (GDTA) as an additive results in an improvement of the photovoltaic performance of NFA-OSCs based on different active layer materials. Upon the addition of GDTA, the open-circuit voltage (V ), fill factor (FF), and short-circuit current density (J ) improve simultaneously. This approach is applied to several material systems including state-of-the-art donor/acceptor pairs showing improvement from 15.8% to 17.6% (in the case of PM6:Y6) and from 17.5% to 18.3% (for PM6:BTP-eC9). Then, the possible reasons behind the observed improvements are discussed. The results point toward the suppression of the CT state to triplet excitons loss channel. This work presents a facile, promising, and generic approach to further improve the performance of NFA-OSCs.

摘要

基于非富勒烯受体的有机太阳能电池(NFA-OSCs)现在已经达到了 20%的功率转换效率的里程碑。为了实现这一目标,似乎有必要将所有损耗渠道降至最低,包括非辐射光电压损耗。非辐射复合在很大程度上是由于电荷转移(CT)态的振动诱导衰减或其反向电子转移到三重态激子而被认为是固有材料性质。本文表明,使用具有 2,2,6,6-四甲基哌啶-1-氧自由基侧基的新型共轭硝酮自由基聚合物(GDTA)作为添加剂,可改善基于不同活性层材料的 NFA-OSCs 的光伏性能。加入 GDTA 后,开路电压(V oc )、填充因子(FF)和短路电流密度(J sc )同时提高。这种方法适用于包括最新的供体/受体对在内的几个材料体系,在 PM6:Y6 的情况下,从 15.8%提高到 17.6%,在 PM6:BTP-eC9 的情况下,从 17.5%提高到 18.3%。然后,讨论了观察到改进的可能原因。结果表明抑制了 CT 态到三重态激子的损耗通道。这项工作提出了一种简便、有前途和通用的方法,可以进一步提高 NFA-OSCs 的性能。

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