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通过聚合物-掺杂剂匹配实现具有卓越导电性的高性能n型有机热电材料。

High-Performance n-Type Organic Thermoelectrics with Exceptional Conductivity by Polymer-Dopant Matching.

作者信息

Gámez-Valenzuela Sergio, Li Jianfeng, Ma Suxiang, Jeong Sang Young, Woo Han Young, Feng Kui, Guo Xugang

机构信息

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

Department of Chemistry, Korea University, Anamro 145, Seoul, 02841, Republic of Korea.

出版信息

Angew Chem Int Ed Engl. 2024 Oct 1;63(40):e202408537. doi: 10.1002/anie.202408537. Epub 2024 Sep 2.

Abstract

Achieving high electrical conductivity (σ) and power factor (PF) simultaneously remains a significant challenge for n-type organic themoelectrics (OTEs). Herein, we demonstrate the state-of-the-art OTEs performance through blending a fused bithiophene imide dimer-based polymer f-BTI2g-SVSCN and its selenophene-substituted analogue f-BSeI2g-SVSCN with a julolidine-functionalized benzimidazoline n-dopant JLBI, vis-à-vis when blended with commercially available n-dopants TAM and N-DMBI. The advantages of introducing a more lipophilic julolidine group into the dopant structure of JLBI are evidenced by the enhanced OTEs performance that JLBI-doped films show when compared to those doped with N-DMBI or TAM. In fact, thanks to the enhanced intermolecular interactions and the lower-lying LUMO level enabled by the increase of selenophene content in polymer backbone, JLBI-doped films of f-BSeI2g-SVSCN exhibit a unprecedent σ of 206 S cm and a PF of 114 μW m K. Interestingly, σ can be further enhanced up to 326 S cm by using TAM dopant as a consequence of its favorable diffusion behavior into densely packed crystalline domains. These values are the highest to date for solution-processed molecularly n-doped polymers, demonstrating the effectiveness of the polymer-dopant matching approach carried out in this work.

摘要

对于n型有机热电器件(OTE)而言,同时实现高电导率(σ)和功率因数(PF)仍然是一项重大挑战。在此,我们通过将基于稠合联噻吩酰亚胺二聚体的聚合物f-BTI2g-SVSCN及其硒吩取代类似物f-BSeI2g-SVSCN与一种呫吨啶官能化的苯并咪唑啉n型掺杂剂JLBI共混,相对于与市售n型掺杂剂TAM和N-DMBI共混时,展示了最先进的OTE性能。将更具亲脂性的呫吨啶基团引入JLBI的掺杂剂结构中的优势,通过与用N-DMBI或TAM掺杂的薄膜相比,JLBI掺杂薄膜所表现出的增强的OTE性能得到了证明。事实上,由于聚合物主链中硒吩含量的增加导致分子间相互作用增强以及更低的最低未占分子轨道(LUMO)能级,f-BSeI2g-SVSCN的JLBI掺杂薄膜展现出206 S cm的前所未有的σ和114 μW m K的PF。有趣的是,由于TAM掺杂剂向密集堆积的结晶域中具有良好的扩散行为,使用TAM掺杂剂可将σ进一步提高至326 S cm。这些值是迄今为止溶液处理的分子n型掺杂聚合物中的最高值,证明了本工作中所采用的聚合物 - 掺杂剂匹配方法的有效性。

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