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基于聚偏氟乙烯和硒化银纳米线的仿生方法促进自支撑柔性热电聚合物复合薄膜中高填料含量

Biomimetic Approach to Facilitate the High Filler Content in Free-Standing and Flexible Thermoelectric Polymer Composite Films Based on PVDF and AgSe Nanowires.

作者信息

Zhou Hongju, Zhang Zhenjie, Sun Chengxiao, Deng Hua, Fu Qiang

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, China.

出版信息

ACS Appl Mater Interfaces. 2020 Nov 18;12(46):51506-51516. doi: 10.1021/acsami.0c15414. Epub 2020 Nov 7.

DOI:10.1021/acsami.0c15414
PMID:33161706
Abstract

A high filler content is often needed in polymer composite-based thermoelectric (TE) films to improve their performance. Nevertheless, this often leads to poor processability and poor mechanical performance. Herein, a biomimetic approach is adopted to facilitate the filler content up to 90.5 wt % in free-standing and flexible n-type PVDF/AgSe TE films, where PVDF dendricolloids are a solution mixed with AgSe nanowires (NWs), followed by filtration. These soft dendric nanoparticles within PVDF dendricolloids have high adhesivity and strong network-building ability, which allows the formation of "grapevine-grape"-like networks with soft dendritic particles and inorganic TE fillers as "grapevine" and "manicure finger grapes", respectively. The maximum power factor of 189.02 μW m K is achieved for a PVDF/AgSe mass ratio of 1:9.5 at 300 K. Meanwhile, excellent flexibility with only 15.8% decrease in electrical conductivity after 1000 bending cycles was observed. These properties at such a high filler content are attributed to the long-range grapevine-like network of soft PVDF dendritic particles and entanglement between numerous AgSe NWs. This work carves a path to fabricate high-performance free-standing flexible n-type TE composite films as well as other functional polymer composites requiring high inorganic filler loading.

摘要

基于聚合物复合材料的热电(TE)薄膜通常需要高填充量来提高其性能。然而,这往往会导致加工性能差和机械性能不佳。在此,采用一种仿生方法,在独立且柔性的n型聚偏氟乙烯/硒化银(PVDF/AgSe)TE薄膜中使填充量高达90.5 wt%,其中PVDF树枝状胶体是与硒化银纳米线(NWs)混合的溶液,随后进行过滤。PVDF树枝状胶体中的这些柔软树枝状纳米颗粒具有高粘附性和强大的网络构建能力,这使得能够分别以柔软树枝状颗粒和无机TE填料作为“葡萄藤”和“手指葡萄”形成“葡萄藤 - 葡萄”状网络。在300 K下,PVDF/AgSe质量比为1:9.5时实现了189.02 μW m K的最大功率因子。同时,观察到具有优异的柔韧性,在1000次弯曲循环后电导率仅下降15.8%。在如此高填充量下的这些性能归因于柔软PVDF树枝状颗粒的远程葡萄藤状网络以及众多AgSe NWs之间的缠结。这项工作为制造高性能独立柔性n型TE复合薄膜以及其他需要高无机填料负载量的功能聚合物复合材料开辟了一条道路。

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