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二聚化小分子受体可实现具有高热稳定性的有机本体异质结层。

Dimerized Small-Molecular Acceptor Enables the Organic Bulk-Heterojunction Layer with High Thermal Stability.

作者信息

Tsai Chia-Hua, Li Fang-Ning, Liao Chuang-Yi, Su Yu-Yang, Tsai Kuen-Wei, Hsiao Yu-Tang, Chang Yi-Ming

机构信息

Raynergy Tek Incorporation, 2F, 60, Park Ave. 2, Hsinchu Science Park, Hsinchu 30844, Taiwan.

Material and Chemical Research Laboratories, Industrial Technology Research Institute, Hsinchu 31040, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2023 Jun 14;15(23):27975-27983. doi: 10.1021/acsami.3c03073. Epub 2023 Jun 5.

Abstract

Incorporation of a non-fullerene acceptor (NFA) into an organic bulk-heterojunction currently has realized the extendable spectral response and high photocurrent generation in organic photodiodes. However, to allow these organic materials to be industrially commercialized, the thermal stability which enables the materials to survive under the process integration and operation needs to be considered. Generally, NFA small molecules showed high crystallinity, which aggregated through heating and led to the poor thermal stability. To tackle the thermal stability issue of highly efficient NFAs, two IDIC-based NFA dimers─IDIC-T Dimer and IDIC-TT Dimer─were designed, synthesized, and characterized; the thermal stability of the BHJ layer incorporating these dimer molecules was evaluated and compared with that of the BHJ layer using the monomer, IDIC-4Cl, as acceptors. Eventually, a power conversion efficiency of 9.44% was achieved for organic photovoltaic devices based on the NFA dimer. The dimers also showed remarkable thermal stability than the IDIC-4Cl monomer, which provided a promising direction for the polymer/small-molecule system in organic photodiodes for industrial practicability.

摘要

将非富勒烯受体(NFA)引入有机本体异质结目前已在有机光电二极管中实现了可扩展的光谱响应和高光电流产生。然而,要使这些有机材料实现工业化商业化,需要考虑材料在工艺集成和运行过程中能够耐受的热稳定性。一般来说,NFA小分子表现出高结晶度,通过加热会发生聚集,导致热稳定性较差。为了解决高效NFA的热稳定性问题,设计、合成并表征了两种基于IDIC的NFA二聚体——IDIC-T二聚体和IDIC-TT二聚体;评估了包含这些二聚体分子的BHJ层的热稳定性,并与使用单体IDIC-4Cl作为受体的BHJ层的热稳定性进行了比较。最终,基于NFA二聚体的有机光伏器件实现了9.44%的功率转换效率。这些二聚体还表现出比IDIC-4Cl单体更显著的热稳定性,这为有机光电二极管中的聚合物/小分子体系在工业实用性方面提供了一个有前景的方向。

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