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易于获取的低带隙聚合物用于高效非富勒烯聚合物太阳能电池,其 E 值低至 0.55eV。

Easily Accessible Low Band Gap Polymer for Efficient Nonfullerene Polymer Solar Cells with a Low E of 0.55 eV.

机构信息

Department of Chemical and Biological Engineering , Sookmyung Women's University , Seoul 04310 , Republic of Korea.

Department of Advanced Materials Engineering for Information & Electronics , Kyung Hee University , 1732 Deogyeong-daero , Giheung-gu, Yongin-si , Gyeonggi-do 446-701 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 6;11(5):5435-5440. doi: 10.1021/acsami.8b20276. Epub 2019 Jan 23.

Abstract

Polymer solar cells (PSCs) have been attracting attention as a promising photovoltaic technology, and power conversion efficiencies (PCEs) of over 14% have been demonstrated. However, the state-of-the-art conjugated polymers for PSCs are based on the complex molecular structure that requires several steps for synthesis and purification, which impedes low materials cost for the PSCs. Thus, it is a key challenge to develop high-performance conjugated polymers with easily accessible building blocks for applications in practical PSCs. Here, a novel low band gap polymer (PFBTBOX) which comprises readily available building blocks was designed and synthesized to be used as an electron donor for PSCs. Affirmative optoelectronic properties of PFBTBOX for photovoltaic applications resulted in high PCEs up to 10.20 and 8.11% with nonfullerene and fullerene acceptors, respectively. Moreover, PFBTBOX exhibited minimal energy loss as low as 0.55 eV with a nonfullerene acceptor, indicating that PFBTBOX is a promising electron donor polymer for practical PSCs with high efficiency exceeding 10%.

摘要

聚合物太阳能电池(PSCs)作为一种很有前途的光伏技术引起了人们的关注,其功率转换效率(PCE)已超过 14%。然而,用于 PSCs 的最先进的共轭聚合物基于复杂的分子结构,需要经过多个步骤的合成和纯化,这阻碍了 PSCs 的材料成本降低。因此,开发具有易于获得的构建模块的高性能共轭聚合物,以应用于实际的 PSCs 是一个关键的挑战。在这里,设计并合成了一种新型的低带隙聚合物(PFBTBOX),它由现成的构建模块组成,用作 PSCs 的电子给体。PFBTBOX 对光伏应用具有肯定的光电性能,分别使用非富勒烯和富勒烯受体,实现了高达 10.20%和 8.11%的高 PCE。此外,PFBTBOX 与非富勒烯受体结合时表现出最小的能量损失,低至 0.55eV,表明 PFBTBOX 是一种很有前途的用于实际 PSCs 的电子给体聚合物,其效率超过 10%。

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