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热力学性质与分子堆积解释三种D18:NFA有机太阳能电池的性能及加工工艺

Thermodynamic Properties and Molecular Packing Explain Performance and Processing Procedures of Three D18:NFA Organic Solar Cells.

作者信息

Wang Zhen, Peng Zhengxing, Xiao Zuo, Seyitliyev Dovletgeldi, Gundogdu Kenan, Ding Liming, Ade Harald

机构信息

Department of Physics and Organic and Carbon Electronics Laboratories (ORaCEL), North Carolina State University, Raleigh, NC, 27695, USA.

CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing, 100190, China.

出版信息

Adv Mater. 2020 Dec;32(49):e2005386. doi: 10.1002/adma.202005386. Epub 2020 Nov 4.

Abstract

Organic solar cells (OSCs) based on D18:Y6 have recently exhibited a record power conversion efficiency of over 18%. The initial work is extended and the device performance of D18-based OSCs is compared with three non-fullerene acceptors, Y6, IT-4F, and IEICO-4Cl, and their molecular packing characteristics and miscibility are studied. The D18 polymer shows unusually strong chain extension and excellent backbone ordering in all films, which likely contributes to the excellent hole-transporting properties. Thermodynamic characterization indicates a room-temperature miscibility for D18:Y6 and D18:IT-4F near the percolation threshold. This corresponds to an ideal quench depth and explains the use of solvent vapor annealing rather than thermal annealing. In contrast, D18:IEICO-4Cl is a low-miscibility system with a deep quench depth during casting and poor morphology control and low performance. A failure of ternary blends with PC BM is likely due to the near-ideal miscibility of Y6 to begin with and indicates that strategies for developing successful ternary or quaternary solar cells are likely very different for D18 than for other high-performing donors. This work reveals several unique property-performance relations of D18-based photovoltaic devices and helps guide design or fabrication of yet higher efficiency OSCs.

摘要

基于D18:Y6的有机太阳能电池(OSC)最近展现出超过18%的创纪录功率转换效率。对最初的工作进行了拓展,并将基于D18的OSC的器件性能与三种非富勒烯受体Y6、IT-4F和IEICO-4Cl进行了比较,同时研究了它们的分子堆积特性和混溶性。D18聚合物在所有薄膜中均表现出异常强烈的链延伸和出色的主链有序性,这可能有助于其优异的空穴传输性能。热力学表征表明,D18:Y6和D18:IT-4F在室温下的混溶性接近渗流阈值。这对应于理想的猝灭深度,并解释了使用溶剂气相退火而非热退火的原因。相比之下,D18:IEICO-4Cl是一个低混溶性体系,在浇铸过程中猝灭深度较深,形态控制较差且性能较低。与PC BM的三元共混物失效可能是由于Y6一开始就具有接近理想的混溶性,这表明开发成功的三元或四元太阳能电池的策略对于D18来说可能与其他高性能供体非常不同。这项工作揭示了基于D18的光电器件的几个独特的性能关系,并有助于指导更高效率OSC的设计或制造。

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