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将萘和卤素引入近红外双电缆共轭聚合物用于具有低电压损失的单组分有机太阳能电池。

Incorporating Naphthalene and Halogen into Near-Infrared Double-Cable Conjugated Polymers for Single-Component Organic Solar Cells with Low-Voltage Losses.

作者信息

Hu Zhijie, Wang Chao, Wang Yikun, Liu Baiqiao, Liang Shijie, Xiao Chengyi, McNeill Christopher R, Li Weiwei

机构信息

Beijing Advanced Innovation Center for Soft Matter Science and Engineering & State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

Department of Materials Science and Engineering, Monash University, Wellington Road, Clayton, Victoria 3800, Australia.

出版信息

ACS Appl Mater Interfaces. 2023 Sep 20;15(37):44054-44061. doi: 10.1021/acsami.3c09528. Epub 2023 Sep 11.

DOI:10.1021/acsami.3c09528
PMID:37694683
Abstract

The invention of near-infrared pedant-based double-cable conjugated polymers has demonstrated remarkable efficacy in single-component organic solar cells (SCOSCs). This work focuses on the innovative double-cable conjugated polymers aimed at attaining good absorption and suitable energy levels. Specifically, in the aromatic side units, the electron-donating (D) part is designed using a thieno[3,4-]pyrrole-4,6-dione (TPD) as a core unit, flanked by two cyclopentadithiophene groups on either side. The electron-deficient (A) terminal groups consist of 2-(3-oxo-2,3-dihydro-1-cyclopenta[]naphthalen-1-ylidene) malononitrile (NC), which can be further modified through fluorination to modulate the physical properties and packing modes of the acceptor material. The resulting double-cable conjugated polymers exhibit broad absorption spectra spanning 500-850 nm and possess lowered Frontier energy levels when incorporating fluorine elements, providing decreased voltage losses in SCOSCs. Therefore, SCOSCs fabricated using these polymers have demonstrated power conversion efficiencies ranging from 7.6 to 10.2%, in which fluorine-containing double-cable conjugated polymers showed higher PCEs due to more favorable crystalline packing, enhanced exciton dissociation probability, and charge-transporting ability.

摘要

基于近红外垂饰的双电缆共轭聚合物的发明在单组分有机太阳能电池(SCOSCs)中已展现出显著功效。这项工作聚焦于旨在实现良好吸收和合适能级的创新型双电缆共轭聚合物。具体而言,在芳香族侧基单元中,供电子(D)部分采用噻吩并[3,4-b]吡咯-4,6-二酮(TPD)作为核心单元进行设计,两侧各有两个环戊二噻吩基团。缺电子(A)端基由2-(3-氧代-2,3-二氢-1-环戊并[a]萘-1-亚基)丙二腈(NC)组成,可通过氟化进一步修饰以调节受体材料的物理性质和堆积模式。所得的双电缆共轭聚合物展现出覆盖500 - 850 nm的宽吸收光谱,并且在引入氟元素时具有降低的前沿能级,这使得SCOSCs中的电压损失减小。因此,使用这些聚合物制造的SCOSCs已展现出7.6%至10.2%的功率转换效率,其中含氟双电缆共轭聚合物由于更有利的晶体堆积、增强的激子解离概率和电荷传输能力而表现出更高的功率转换效率。

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