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由水溶性聚噻吩制备的自组装多层膜的结构

Structure of self-assembled multilayers prepared from water-soluble polythiophenes.

作者信息

Viinikanoja Antti, Areva Sami, Kocharova Natalia, Aäritalo Timo, Vuorinen Maarit, Savunen Arto, Kankare Jouko, Lukkari Jukka

机构信息

Department of Chemistry, University of Turku, FIN-20014 Turku, Finland.

出版信息

Langmuir. 2006 Jul 4;22(14):6078-86. doi: 10.1021/la060519u.

Abstract

We have studied the structure and morphology of self-assembled polyelectrolyte multilayers prepared using poly(styrenesulfonate) (PSS) and four different cationic poly(alkoxythiophene) derivatives bearing methylimidazolium-terminated ionic side chain at the 3-position of the thiophene ring: poly(1-methyl-3-[3-[3-thienyloxy]-propyl]-1H-imidazolium) (P3TOPIM), poly(1-methyl-3-[6-[3-thienyloxy]-hexyl]-1H-imidazolium) (P3TOHIM), poly(1-methyl-3-[2-[(4-methyl-3-thienyl)oxy]-ethyl]-1H-imidazolium ) (P4Me-3TOEIM), and poly(1-methyl-3-[6-[(4-methyl-3-thienyl)oxy]-hexyl]-1H-imidazolium ) (P4Me-3TOHIM). All the multilayers exhibited regular growth. The thickness of the multilayers was measured with ellipsometry, their layer-by-layer growth was followed by polarization modulation infrared reflection-absorption spectroscopy (PM-IRRAS) and ellipsometry, and the morphology of the films was studied by atomic force microscopy (AFM). The length of the methylimidazolium-terminated side chain (C(n), n = 2, 3, 6) and the substituent (H or Me) at the 4-position of the thiophene ring were varied. All multilayers were inhomogeneous in the sub-micrometer scale and contained aggregates of two kinds. The large ones with a low and constant surface number density were attributed to PSS, whereas the small aggregates were polythiophene-based. The surface density of these organic semiconducting nanoparticles greatly depended on the structure of polythiophene, being favored by polymer regioregularity and the length of the side chain. The side chains remained disordered in all the multilayers, but with polythiophenes having hexyl chains both the imidazolium and thiophene rings tended to orient themselves more perpendicular to the surface than in films containing shorter chains (C2 or C3). The relative water content of the multilayers (at 7.1% relative humidity) did not depend on the film thickness and was the lowest for P4Me-3TOHIM. As the number of bilayers increased the methylimidazolium-sulfonate ion pairs gradually weakened and became more individually hydrated.

摘要

我们研究了使用聚苯乙烯磺酸盐(PSS)和四种不同的阳离子聚(烷氧基噻吩)衍生物制备的自组装聚电解质多层膜的结构和形态,这些衍生物在噻吩环的3位带有甲基咪唑鎓封端的离子侧链:聚(1-甲基-3-[3-[3-噻吩氧基]-丙基]-1H-咪唑鎓)(P3TOPIM)、聚(1-甲基-3-[6-[3-噻吩氧基]-己基]-1H-咪唑鎓)(P3TOHIM)、聚(1-甲基-3-[2-[(4-甲基-3-噻吩基)氧基]-乙基]-1H-咪唑鎓)(P4Me-3TOEIM)和聚(1-甲基-3-[6-[(4-甲基-3-噻吩基)氧基]-己基]-1H-咪唑鎓)(P4Me-3TOHIM)。所有多层膜均呈现出规则生长。用椭偏仪测量多层膜的厚度,通过偏振调制红外反射吸收光谱(PM-IRRAS)和椭偏仪跟踪其逐层生长,并通过原子力显微镜(AFM)研究薄膜的形态。甲基咪唑鎓封端侧链的长度(C(n),n = 2、3、6)以及噻吩环4位的取代基(H或Me)有所变化。所有多层膜在亚微米尺度上都是不均匀的,并且包含两种聚集体。表面数密度低且恒定的大聚集体归因于PSS,而小聚集体则是以聚噻吩为基础的。这些有机半导体纳米颗粒的表面密度在很大程度上取决于聚噻吩的结构,聚合物的区域规整性和侧链长度有利于其形成。在所有多层膜中侧链均保持无序状态,但与含有较短链(C2或C3)的薄膜相比,对于具有己基链的聚噻吩,咪唑鎓环和噻吩环都更倾向于垂直于表面排列。多层膜的相对含水量(在7.1%相对湿度下)不取决于膜的厚度,并且对于P4Me-3TOHIM是最低的。随着双层数的增加,甲基咪唑鎓-磺酸盐离子对逐渐减弱并变得更加独立地水合。

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