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利用成分梯度来阐明高性能聚合物半导体共混物的相行为。

Harnessing Compositional Gradients to Elucidate Phase Behaviors toward High Performance Polymer Semiconductor Blends.

作者信息

Venkatesh Rahul, Liu Aaron L, Zheng Yulong, Zhao Haoqun, Grover Martha A, Meredith J Carson, Reichmanis Elsa

机构信息

School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive NW, Atlanta, Georgia 30332, United States.

School of Chemistry and Biochemistry, Georgia Institute of Technology, 901 Atlantic Drive, Atlanta, Georgia 30332, United States.

出版信息

ACS Appl Electron Mater. 2024 Aug 13;6(8):5661-5671. doi: 10.1021/acsaelm.4c00680. eCollection 2024 Aug 27.

Abstract

Polymer semiconductor/insulator blends offer a promising avenue to achieve desired mechanical properties, environmental stability, and high device performance in organic field-effect transistors. A comprehensive understanding of process-structure-property relationships necessitates a thorough exploration of the composition space to identify transitions in performance, morphology, and phase behavior. Hence, this study employs a high-throughput gradient thin film library, enabling rapid and continuous screening of composition-morphology-device performance relationships in conjugated polymer blends. Applied to a donor-acceptor copolymer blend, this technique efficiently surveys a broad composition range, capturing trends in device performance across the gradient. Furthermore, characterizing the gradient library using microscopy and depth profiling techniques pinpointed composition-dependent transitions in morphology. To validate the results and gain deeper insights, uniform-composition experiments were conducted on select compositions within and outside the gradient range. Depth profiling experiments on the constant composition films unveil the presence of the semiconducting polymer at the air interface, with apparent enrichment of the semiconductor at the substrate interface at low ratios of the semiconducting component, transitioning to a more even distribution within the bulk of the film at higher ratios. The generalizability of the gradient approach was further confirmed by its application to a homopolymer under different solution processing conditions.

摘要

聚合物半导体/绝缘体共混物为在有机场效应晶体管中实现所需的机械性能、环境稳定性和高器件性能提供了一条有前景的途径。要全面理解工艺-结构-性能关系,就需要彻底探索成分空间,以确定性能、形态和相行为的转变。因此,本研究采用了高通量梯度薄膜库,能够快速且连续地筛选共轭聚合物共混物中的成分-形态-器件性能关系。将该技术应用于供体-受体共聚物共混物时,能有效地考察宽广的成分范围,捕捉整个梯度范围内器件性能的趋势。此外,使用显微镜和深度剖析技术对梯度库进行表征,确定了形态中依赖于成分的转变。为了验证结果并获得更深入的见解,对梯度范围内外的选定成分进行了均匀成分实验。对恒定成分薄膜的深度剖析实验揭示了半导体聚合物在空气界面的存在,在半导体组分比例较低时,半导体在基底界面明显富集,而在比例较高时,转变为在薄膜主体内更均匀的分布。通过将梯度方法应用于不同溶液加工条件下的均聚物,进一步证实了该方法的通用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1412/11360374/7be95862887a/el4c00680_0001.jpg

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