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A Fused Ring Electron Acceptor with Decacyclic Core Enables over 13.5% Efficiency for Organic Solar Cells

机译:具有十环核的熔融环电子受体使有机太阳能电池的效率超过13.5%

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摘要

Extending pi-conjugation of donor units in fused ring electron acceptors (FREAs) promises to reinforce intramolecular charge transfer for smaller bandgaps, and enhances intermolecular interactions for higher charge mobility. Despite these advantages, power conversion efficiencies (PCEs) of FREAs with a large planar donor core are still below 12%. Herein, a fused decacyclic donor unit, IDC, is developed, and the FREA, IDCIC, whose optical bandgap is 1.45 eV, is synthesized. The FTAZ:IDCIC-based organic solar cell (OSC) with a binary additive, chloronaphthalene and 1,8-diiodooctane (CN&DIO), affords a remarkable PCE of 13.58%, which is among the highest efficiencies of OSCs. The binary additive plays a crucial role in the morphology of FTAZ:IDCIC-based OSCs. The addition of DIO promotes IDCIC to aggregate and enhances domain size and domain purity in FTAZ:IDCIC blend film for its poor solubility in DIO, while the addition of chloronaphthalene (CN) inhibits the aggregation, facilitates IDCIC to diffuse into the donor, and reduces domain size and domain purity for its excellent solubility in CN. The binary additive, CN&DIO, compromises the effect of the two; thus FTAZ:IDCIC-based OSCs with 0.25% CN&DIO obtain moderate domain size and high domain purity simultaneously, achieving the least charge recombination for the highest J(SC) (21.98 mA cm(-2)) and fill factor (FF) (71.03%).
机译:扩大稠合环电子受体(FREAs)中供体单元的π共轭,有望为较小的带隙增强分子内电荷转移,并为更高的电荷迁移率增强分子间相互作用。尽管具有这些优点,但具有较大平面供体核的FREA的功率转换效率(PCE)仍低于12%。在此,开发了稠合的十环供体单元IDC,并合成了光学带隙为1.45eV的FREA IDCIC。具有二元添加剂,氯萘和1,8-二碘辛烷(CN&DIO)的基于FTAZ:IDCIC的有机太阳能电池(OSC)的PCE高达13.58%,这是OSC效率最高的之一。二元添加剂在基于FTAZ:IDCIC的OSC的形态中起着至关重要的作用。添加DIO可以促进IDCIC聚集并增强FTAZ:IDCIC共混膜中的畴尺寸和畴纯度,因为它在DIO中的溶解性差,而添加氯萘(CN)则可以抑制聚集,有利于IDCIC扩散到供体中并减少域大小和域纯度,因为其在CN中具有出色的溶解性。二元添加剂CN&DIO折衷了两者的效果。因此,具有0.25%CN&DIO的基于FTAZ:IDCIC的OSC同时获得中等域大小和高域纯度,从而实现了最高J(SC)(21.98 mA cm(-2))和填充因子(FF)的最小电荷重组(71.03 %)。

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