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通过协同实现高电子迁移率和掺杂效率实现的高性能n型有机热电材料

High-Performance n-Type Organic Thermoelectrics Enabled by Synergistically Achieving High Electron Mobility and Doping Efficiency.

作者信息

Feng Kui, Wang Junwei, Jeong Sang Young, Yang Wanli, Li Jianfeng, Woo Han Young, Guo Xugang

机构信息

Department of Materials Science and Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China.

Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China.

出版信息

Adv Sci (Weinh). 2023 Oct;10(29):e2302629. doi: 10.1002/advs.202302629. Epub 2023 Aug 8.

Abstract

n-Doped polymers with high electrical conductivity (σ) are still very scarce in organic thermoelectrics (OTEs), which limits the development of efficient organic thermoelectric generators. A series of fused bithiophene imide dimer-based polymers, PO8, PO12, and PO16, incorporating distinct oligo(ethylene glycol) side-chain to optimize σ is reported here. Three polymers show a monotonic electron mobility decrease as side-chain size increasing due to the gradually lowered film crystallinity and change of backbone orientation. Interestingly, polymer PO12 with a moderate side-chain size delivers a champion σ up to 92.0 S cm and a power factor (PF) as high as 94.3 µW m K in the series when applied in OTE devices. The PF value is among the highest ones for the solution-processing n-doped polymers. In-depth morphology studies unravel that the moderate crystallinity and the formation of 3D conduction channel derived from bimodal orientation synergistically contribute to high doping efficiency and large charge carrier mobility, thus resulting in high performance for the PO12-based OTEs. The results demonstrate the great power of simple tuning of side chain in developing n-type polymers with substantial σ for improving organic thermoelectric performance.

摘要

在有机热电材料(OTE)中,具有高电导率(σ)的n型掺杂聚合物仍然非常稀少,这限制了高效有机热电发电机的发展。本文报道了一系列基于稠合联噻吩酰亚胺二聚体的聚合物PO8、PO12和PO16,它们引入了不同的聚(乙二醇)侧链以优化电导率。由于薄膜结晶度逐渐降低和主链取向变化,随着侧链尺寸增加,这三种聚合物的电子迁移率呈单调下降。有趣的是,当应用于OTE器件时,具有中等侧链尺寸的聚合物PO12在该系列中表现出高达92.0 S/cm的最佳电导率和高达94.3 μW m⁻¹ K⁻²的功率因子(PF)。该PF值在溶液加工的n型掺杂聚合物中处于最高水平之一。深入的形态学研究表明,中等结晶度和由双峰取向形成的三维传导通道协同作用,有助于提高掺杂效率和大电荷载流子迁移率,从而使基于PO12的OTE具有高性能。结果表明,在开发具有高电导率的n型聚合物以改善有机热电性能方面,简单调节侧链具有强大作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ecb/10582446/32449d571ec1/ADVS-10-2302629-g004.jpg

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