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高性能PM6:Y6有机光伏共混物中来自分子内中间态的电荷分离

Charge Separation from an Intra-Moiety Intermediate State in the High-Performance PM6:Y6 Organic Photovoltaic Blend.

作者信息

Wang Rui, Zhang Chunfeng, Li Qian, Zhang Zhiguo, Wang Xiaoyong, Xiao Min

机构信息

National Laboratory of Solid State Microstructures, School of Physics, and Collaborative Innovation Center for Advanced Microstructures, Nanjing University, Nanjing 210093, China.

College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

J Am Chem Soc. 2020 Jul 22;142(29):12751-12759. doi: 10.1021/jacs.0c04890. Epub 2020 Jul 10.

Abstract

Bulk-heterojunction organic photovoltaic devices with nonfullerene acceptors (NFAs) exhibit efficient hole transfer with small interfacial energy offset, which results in power conversion efficiencies above 17% in single junction devices using the high-performance NFA of Y6. However, the underlying mechanism responsible for the hole transfer channel in the polymer/Y6 blends remains poorly understood. Herein, we report that the hole transfer channel of photocharge generation is mediated by an intra-moiety excited state in a blend of donor polymer PM6 and NFA Y6 using broadband transient absorption (TA) spectroscopy. By comparing the TA data recorded from the solution and film Y6 samples, we identify the ultrafast formation of an intra-moiety excimer state together with the conversion from the primary local excitation on a time scale of ∼0.2 ps in the Y6 film. The intra-moiety excimer state acts as the intermediate for the hole transfer channel, which dissociates into free polarons on a time scale of ∼15 ps in the PM6/Y6 blend at room temperature. The intra-moiety intermediate state, arising from the intermolecular coupling in Y6 domains, is markedly different from the interfacial charge transfer state, which is commonly accepted as the intermediate state for the electron transfer channel. These findings suggest that manipulating the interplay between intra-moiety and interfacial excited species can provide a promising route for further improving device performance.

摘要

具有非富勒烯受体(NFA)的体相异质结有机光伏器件表现出高效的空穴传输,且界面能偏移较小,这使得使用高性能NFA Y6的单结器件的功率转换效率超过17%。然而,聚合物/Y6共混物中空穴传输通道的潜在机制仍知之甚少。在此,我们报道了利用宽带瞬态吸收(TA)光谱,在供体聚合物PM6和NFA Y6的共混物中,光生电荷产生的空穴传输通道是由分子内激发态介导的。通过比较从溶液和薄膜Y6样品记录的TA数据,我们确定了在Y6薄膜中,在约0.2 ps的时间尺度上,分子内准分子态的超快形成以及从初级局部激发的转换。分子内准分子态充当空穴传输通道的中间体,在室温下,它在PM6/Y6共混物中约15 ps的时间尺度上解离为自由极化子。分子内中间体状态源于Y6域中的分子间耦合,与通常被认为是电子传输通道中间体状态的界面电荷转移状态明显不同。这些发现表明,控制分子内和界面激发物种之间的相互作用可以为进一步提高器件性能提供一条有前景的途径。

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