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基于高度扭曲的苝二酰亚胺的非富勒烯受体全小分子有机太阳能电池,能量转换效率超过 6%。

Nonfullerene-Acceptor All-Small-Molecule Organic Solar Cells Based on Highly Twisted Perylene Bisimide with an Efficiency of over 6.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology , Beijing 100029, China.

Key Laboratory of Organic Solids, Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190, China.

出版信息

ACS Appl Mater Interfaces. 2017 Jan 25;9(3):2739-2746. doi: 10.1021/acsami.6b13721. Epub 2017 Jan 10.

Abstract

Two twisted singly linked perylene bisimide (PBI) dimers with chalcogen bridges in the PBI cores, named C4,4-SdiPBI-S and C4,4-SdiPBI-Se, were synthesized as acceptors for nonfullerene all-small-molecule organic solar cells (NF all-SMSCs). A moderate-band-gap small-molecule DR3TBDTT used as the electron donor displayed complementary absorption with C4,4-SdiPBI-S and C4,4-SdiPBI-Se. It was found that solvent-vapor annealing (SVA) played a critical role in the photovoltaic performance in NF all-SMSCs, which improves the crystallinity of the donor and acceptors, promotes the proper phase segregation domain size, and therefore enhances charge transport. The power conversion efficiencies (PCEs) of NF all-SMSC devices based on DR3TBDTT/C4,4-SdiPBI-S and DR3TBDTT/C4,4-SdiPBI-Se increased from 2.52% to 5.81% (J = 11.12 mA cm, V = 0.91 V, and FF = 57.32%) and from 2.65% to 6.22% (J = 11.55 mA cm, V = 0.92 V, and FF = 58.72%), respectively, after exposure to chloroform vapor. The best efficiency of 6.22% is one of the highest PCEs for NF all-SMSC-based PBI acceptors so far. The studies illustrate that highly efficient NF all-SMSCs can be achieved by using a PBI acceptor with a suitable SVA process.

摘要

两个扭曲的单键连接的苝二酰亚胺(PBI)二聚体,其 PBI 核中带有硫属桥,分别命名为 C4,4-SdiPBI-S 和 C4,4-SdiPBI-Se,被合成作为非富勒烯全小分子有机太阳能电池(NF all-SMSCs)的受体。一种中等带隙小分子 DR3TBDTT 被用作电子给体,与 C4,4-SdiPBI-S 和 C4,4-SdiPBI-Se 具有互补吸收。研究发现,溶剂蒸气退火(SVA)在 NF all-SMSCs 的光伏性能中起着关键作用,它可以提高给体和受体的结晶度,促进适当的相分离域尺寸,从而增强电荷输运。基于 DR3TBDTT/C4,4-SdiPBI-S 和 DR3TBDTT/C4,4-SdiPBI-Se 的 NF all-SMSC 器件的功率转换效率(PCE)从 2.52%提高到 5.81%(J = 11.12 mA cm,V = 0.91 V,FF = 57.32%)和从 2.65%提高到 6.22%(J = 11.55 mA cm,V = 0.92 V,FF = 58.72%),在暴露于氯仿蒸气后。最佳效率为 6.22%,是迄今为止基于 PBI 受体的 NF all-SMSC 的最高 PCE 之一。研究表明,通过使用具有适当 SVA 工艺的 PBI 受体,可以实现高效的 NF all-SMSCs。

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