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三元有机太阳能电池通过添加小分子荧光染料来调制相分布,从而获得超过 10.5%的高效率。

Ternary organic solar cells with a phase-modulated surface distribution via the addition of a small molecular luminescent dye to obtain a high efficiency over 10.5.

机构信息

School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China (UESTC), Chengdu 610054, P. R. China.

出版信息

Nanoscale. 2018 Sep 13;10(35):16455-16467. doi: 10.1039/c8nr04335c.

DOI:10.1039/c8nr04335c
PMID:30152834
Abstract

Incorporation of a ternary organic component is an effective strategy to enhance the performance of bulk heterojunction (BHJ) organic solar cells (OSCs). In this study, a small molecule luminescent dye, C545T, was first doped into blends of PTB7-Th/PC71BM and PTB7/PC71BM as a third component to fabricate ternary OSCs. It is demonstrated that C545T can disrupt the severe vertical distribution in the binary blend and effectively modulate the novel surface chemical configuration by improving the self-assembly process of the polymer donor, as a result of the good miscibility among the active layer materials and the π-π interactions between PC71BM and C545T. The obtained homogeneously bicontinuous BHJ with numerous interpenetrating nanofibers optimizes the domain size of exciton diffusion and the length of charge transfer. The energy transfer between C545T and polymers changes the transmission path of photo-generated excitons, which together improve the exciton dissociation process and reduce the recombination loss. Champion power conversion efficiencies (PCEs) of 10.69% and 9.42% were achieved by the ternary blends of PTB7-Th/C545T/PC71BM and PTB7/C545T/PC71BM, respectively, which correspond to a nearly 20% enhancement over their binary counterparts.

摘要

三元有机组分的掺入是提高体异质结(BHJ)有机太阳能电池(OSC)性能的有效策略。在本研究中,小分子发光染料 C545T 首次被掺杂到 PTB7-Th/PC71BM 和 PTB7/PC71BM 的混合物中作为第三组分来制备三元 OSC。结果表明,C545T 可以破坏二元混合物中严重的垂直分布,并通过改善聚合物给体的自组装过程来有效调节新的表面化学构型,这是由于活性层材料之间的良好混溶性和 PC71BM 与 C545T 之间的π-π相互作用。所获得的均匀双连续 BHJ 具有许多相互贯穿的纳米纤维,优化了激子扩散的域尺寸和电荷转移的长度。C545T 和聚合物之间的能量转移改变了光生激子的传输路径,这共同提高了激子解离过程并降低了复合损耗。PTB7-Th/C545T/PC71BM 和 PTB7/C545T/PC71BM 三元混合物的功率转换效率(PCE)分别达到了 10.69%和 9.42%,与二元混合物相比,分别提高了近 20%。

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