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基于聚苯乙烯-b-聚(3-己基噻吩)嵌段共聚物的高性能场效应晶体管。

High-performance field-effect transistors based on polystyrene-b-poly(3-hexylthiophene) diblock copolymers.

机构信息

Chemical Sciences Division, Oak Ridge National Laboratory, One Bethel Valley Road, Oak Ridge, Tennessee 37831, United States.

出版信息

ACS Nano. 2011 May 24;5(5):3559-67. doi: 10.1021/nn2007964. Epub 2011 Apr 11.

Abstract

Polystyrene-b-poly(3-hexylthiophene) (PS-b-P3HT) block copolymers with fixed PS block length have been synthesized by combined atom transfer radical polymerization (ATRP) and Grignard metathesis (GRIM) polymerization. The self-assembled structures of these diblock copolymer thin films based on PS-b-P3HT have been studied by TEM, SAED, GIXD, AFM, and additionally by first principles modeling and simulation. These block copolymers undergo microphase separation and form nanostructured spheres, lamellae, nanofibers, or nanoribbons in the films dictated by the molecular weight of the P3HT block. Within the diblock copolymer thin film, PS blocks segregate to form amorphous domains, and the covalently bonded conjugated P3HT blocks exist as highly ordered crystalline domains through intermolecular packing with their alkyl side chains aligned normal to the substrate while the thiophene rings align parallel to the substrate through π-π stacking. The conjugated PS-b-P3HT block copolymers exhibited significant improvements in organic field-effect transistor (OFET) performance and environmental stability as compared to P3HT homopolymers, with up to a factor of 2 increase in measured mobility (0.08 cm(2)/(V·s)) for the P4 (85 wt % P3HT). Overall, this work demonstrates that the high degree of molecular order induced by block copolymer phase separation can improve the transport properties and stability of conjugating polymers, which are critical for high-performance OFETs and other organic electronics.

摘要

通过原子转移自由基聚合(ATRP)和格氏试剂交叉偶联(GRIM)聚合相结合,合成了具有固定 PS 嵌段长度的聚苯乙烯-聚(3-己基噻吩)(PS-b-P3HT)嵌段共聚物。通过 TEM、SAED、GIXD、AFM 对这些 PS-b-P3HT 嵌段共聚物薄膜的自组装结构进行了研究,并通过第一性原理建模和模拟进行了补充。这些嵌段共聚物在薄膜中发生微相分离,形成纳米结构的球体、层状结构、纳米纤维或纳米带,这取决于 P3HT 嵌段的分子量。在嵌段共聚物薄膜中,PS 嵌段分离形成非晶区,通过分子间堆积,共价键合的共轭 P3HT 嵌段以高度有序的结晶区存在,其烷基侧链与衬底垂直排列,而噻吩环通过 π-π 堆积与衬底平行排列。与 P3HT 均聚物相比,共轭 PS-b-P3HT 嵌段共聚物在有机场效应晶体管(OFET)性能和环境稳定性方面有显著提高,其中 P4(85wt% P3HT)的迁移率提高了 2 倍(0.08cm2/(V·s))。总的来说,这项工作表明,嵌段共聚物相分离引起的高度分子有序性可以提高共轭聚合物的传输性能和稳定性,这对高性能 OFET 和其他有机电子学至关重要。

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