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A New Nonfullerene Acceptor with Near Infrared Absorption for High Performance Ternary‐Blend Organic Solar Cells with Efficiency over 13

机译:新型近红外吸收非富勒烯受体用于高效三元混合有机太阳能电池效率超过13%

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摘要

A new acceptor–donor–acceptor (A–D–A) type nonfullerene acceptor, >3TT‐FIC, which has three fused thieno[3,2‐b]thiophene as the central core and difluoro substituted indanone as the end groups, is designed and synthesized. >3TT‐FIC exhibits broad and strong absorption with extended onset absorption to 995 nm and a low optical bandgap of 1.25 eV. The binary device based on >3TT‐FIC and the polymer >PTB7‐Th exhibits a power conversion efficiency (PCE) of 12.21% with a high short circuit current density (   J sc) of 25.89 mA cm−2. To fine‐tune the morphology and make full use of the visible region sunlight, phenyl‐C71‐butyricacid‐methyl ester (>PC71BM) is used as the third component to fabricate ternary devices. In contrast to the binary devices, the ternary blend organic solar cells show significantly enhanced EQE ranging from 300 to 700 nm and thus an improved  J sc with a high value of 27.73 mA cm−2. A high PCE with a value of 13.54% is achieved for the ternary devices, which is one of the highest efficiencies in single junction organic solar cells reported to date. The results provide valuable insight for the ternary devices in which the external quantum efficiency (EQE) induced by the third component is evidently observed and directly contributed to the enhancement of the device efficiency.
机译:一种新的受体-供体-受体(AD)型非富勒烯受体> 3TT-FIC ,它具有三个稠合的噻吩并[3,2-b]噻吩作为中心核心,并被二氟取代的茚满酮作为端基,进行了设计和合成。 > 3TT-FIC 表现出宽而强的吸收,起始吸收扩展到995 nm,低光学带隙为1.25 eV。基于> 3TT-FIC 和聚合物> PTB7-Th 的二进制设备显示出12.21%的功率转换效率(PCE),且短路电流密度(J sc)高25.89 mA cm −2 。为了微调形态并充分利用可见光区的阳光,苯基C71丁酸甲酯(> PC71BM )被用作制造三元器件的第三种成分。与二元器件相比,三元共混有机太阳能电池的EQE显着增强,范围从300 nm到700 nm,因此具有更高的improvedJ sc值,具有27.73 mA cm -2 的高值。三元器件的PCE值高达13.54%,这是迄今为止报道的单结有机太阳能电池效率最高的之一。该结果为三元器件提供了有价值的见解,其中明显观察到由第三组分引起的外部量子效率(EQE),并直接有助于提高器件效率。

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