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一种具有高导电性的非共轭自由基聚合物玻璃。

A nonconjugated radical polymer glass with high electrical conductivity.

机构信息

Charles D. Davidson School of Chemical Engineering, 480 Stadium Mall Drive, Purdue University, West Lafayette, IN 47906, USA.

Department of Chemistry, 560 Oval Drive, Purdue University, West Lafayette, IN 47906, USA.

出版信息

Science. 2018 Mar 23;359(6382):1391-1395. doi: 10.1126/science.aao7287.

Abstract

Solid-state conducting polymers usually have highly conjugated macromolecular backbones and require intentional doping in order to achieve high electrical conductivities. Conversely, single-component, charge-neutral macromolecules could be synthetically simpler and have improved processibility and ambient stability. We show that poly(4-glycidyloxy-2,2,6,6-tetramethylpiperidine-1-oxyl), a nonconjugated radical polymer with a subambient glass transition temperature, underwent rapid solid-state charge transfer reactions and had an electrical conductivity of up to 28 siemens per meter over channel lengths up to 0.6 micrometers. The charge transport through the radical polymer film was enabled with thermal annealing at 80°C, which allowed for the formation of a percolating network of open-shell sites in electronic communication with one another. The electrical conductivity was not enhanced by intentional doping, and thin films of this material showed high optical transparency.

摘要

固态导电聚合物通常具有高度共轭的高分子主链,需要进行有意掺杂才能实现高电导率。相反,单一组分、电荷中性的高分子可能在合成上更简单,并且具有改善的加工性和环境稳定性。我们表明,聚(4-缩水甘油氧基-2,2,6,6-四甲基哌啶-1-氧自由基),一种亚环境玻璃化转变温度的非共轭自由基聚合物,经历了快速的固态电荷转移反应,在长达 0.6 微米的通道长度下,电导率高达 28 西门子/米。通过在 80°C 下进行热退火,可以实现通过自由基聚合物膜的电荷输运,这允许形成与彼此电子通信的开壳位点的渗流网络。电导率没有通过有意掺杂得到增强,并且该材料的薄膜表现出高光学透明度。

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