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采用结构明确的圆柱形嵌段共聚物胶束作为模板制备具有可控长度的导电线型单分散聚苯胺纳米纤维。

Conductive, monodisperse polyaniline nanofibers of controlled length using well-defined cylindrical block copolymer micelles as templates.

机构信息

School of Chemistry, University of Bristol, Bristol BS8 1TS (UK).

出版信息

Chemistry. 2013 Sep 23;19(39):13030-9. doi: 10.1002/chem.201300589. Epub 2013 Aug 9.

DOI:10.1002/chem.201300589
PMID:23934688
Abstract

Stable colloidal dispersions of polyaniline (PAni) nanofibers with controlled lengths from about 200 nm-1.1 μm and narrow length distributions (Lw/Ln < 1.04; Lw = weight average micelle length, Ln = number average micelle length) were prepared through the template-directed synthesis of PAni using monodisperse, solution-self-assembled, cylindrical, block copolymer micelles as nanoscale templates. These micelles were prepared through a crystallization-driven living self-assembly method from a poly(ferrocenyldimethylsilane)-b-poly(2-vinylpyridine) block copolymer (PFS25 -b-P2VP425). This material was initially self-assembled in iPrOH to form cylindrical micelles with a crystalline PFS core and a P2VP corona and lengths of up to several micrometers. Sonication of this sample then yielded short cylinders with average lengths of 90 nm and a broad length distribution (Lw/Ln = 1.32). Cylindrical micelles of PFS25 -b-P2VP425 with controlled lengths and narrow length distributions (Lw/Ln < 1.04) were subsequently prepared using thermal treatment at specific temperatures between 83.5 and 92.0 °C using a 1D self-seeding process. These samples were then employed in the template-directed synthesis of PAni nanofibers through a two-step procedure, where the micellar template was initially stabilised by deposition of an oligoaniline coating followed by addition of a polymeric acid dopant, resulting in PAni nanofibers in the emeraldine salt (ES) state. The ES-PAni nanofibers were shown to be conductive by scanning conductance microscopy, whereas the precursor PFS25-b-P2VP425 micelle templates were found to be dielectric in character.

摘要

通过使用单分散、溶液自组装、圆柱形、嵌段共聚物胶束作为纳米级模板,通过苯胺的模板导向合成,制备了具有受控长度(约 200nm-1.1μm)和窄长度分布(Lw/Ln < 1.04;Lw = 重均胶束长度,Ln = 数均胶束长度)的聚苯胺(PAni)纳米纤维稳定胶体分散体。这些胶束是通过聚(二茂铁基二甲基硅烷)-b-聚(2-乙烯基吡啶)嵌段共聚物(PFS25-b-P2VP425)的结晶驱动活自组装方法制备的。最初,该材料在异丙醇中自组装形成具有结晶 PFS 核和 P2VP 冠的圆柱形胶束,长度可达数微米。然后对该样品进行超声处理,得到平均长度为 90nm 且长度分布较宽(Lw/Ln = 1.32)的短圆柱。随后使用特定温度(83.5 至 92.0°C)之间的热处理在 1D 自种过程中制备具有受控长度和窄长度分布(Lw/Ln < 1.04)的 PFS25-b-P2VP425 圆柱形胶束。然后,通过两步程序在模板导向的 PAni 纳米纤维合成中使用这些样品,其中胶束模板最初通过沉积寡苯胺涂层来稳定,然后加入聚合物酸掺杂剂,导致在埃利昂盐(ES)状态下形成 PAni 纳米纤维。通过扫描电导显微镜显示 ES-PAni 纳米纤维具有导电性,而前体 PFS25-b-P2VP425 胶束模板则具有介电性质。

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