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纳米棒增容剂在导电聚合物共混物中的长径比效应

Aspect-Ratio Effect of Nanorod Compatibilizers in Conducting Polymer Blends.

作者信息

Kwon Taegyun, Ku Kang Hee, Kang Dong Jin, Lee Won Bo, Kim Bumjoon J

机构信息

Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 305-701 Republic of Korea.

Department of Chemical and Biomolecular Engineering, Sogang University, Seoul, 121-742 Republic of Korea.

出版信息

ACS Macro Lett. 2014 May 20;3(5):398-404. doi: 10.1021/mz500024n. Epub 2014 Apr 8.

Abstract

Nanoparticles (NPs) at the interface between two different polymer blends or fluid mixtures can function as compatibilizers, thereby dramatically improving the interfacial properties of the blends or the fluid mixtures. Their compatibilizing ability is strongly dependent on their size, shape, and aspect ratios (ARs), which determines their adsorption energy to the interface as well as their entropic penalty when they are being strongly segregated at the interface. Herein, we investigated the effect of the ARs of nanorod surfactants on the conducting polymer blend of poly(triphenylamine) (PTPA) templated by polystyrene (PS) colloids. The lengths of the polymer-coated CuPt nanorods (CuPt NRs) were 5, 15, and 32 nm with a fixed width of 5 nm, thus producing three different AR values of 1, 3, and 6, respectively. For quantitative analysis, the morphological and electrical behaviors of the polymer blends were investigated in terms of the volume fraction and AR of the NRs. The dramatic change in the morphological and electrical properties of the blend film was observed for all three NR surfactants at the NR volume fraction of approximately 1 vol %. Therefore, NR surfactants with larger ARs had better compatibilizing power for a given number of NRs in the blends. Also, they exhibited a stronger tendency to be aligned parallel to the PS/PTPA interface. Also, we demonstrated the successful use of the NR surfactants in the fabrication of conducting polymer blend film that requires only minimal concentrations of conducting polymers. To the best of our knowledge, this is the first report of an experiment on the AR effect of NR compatibilizers in polymer blends.

摘要

处于两种不同聚合物共混物或流体混合物界面处的纳米颗粒(NPs)可充当增容剂,从而显著改善共混物或流体混合物的界面性质。它们的增容能力强烈依赖于其尺寸、形状和纵横比(ARs),这决定了它们在界面处的吸附能以及当它们在界面处强烈偏析时的熵罚。在此,我们研究了纳米棒表面活性剂的纵横比对以聚苯乙烯(PS)胶体为模板的聚(三苯胺)(PTPA)导电聚合物共混物的影响。聚合物包覆的CuPt纳米棒(CuPt NRs)的长度分别为5、15和32 nm,宽度固定为5 nm,从而分别产生1、3和6这三个不同的纵横比值。为了进行定量分析,根据纳米棒的体积分数和纵横比对聚合物共混物的形态和电学行为进行了研究。在纳米棒体积分数约为1 vol %时,观察到所有三种纳米棒表面活性剂的共混膜的形态和电学性质都发生了显著变化。因此,对于共混物中给定数量的纳米棒,具有较大纵横比的纳米棒表面活性剂具有更好的增容能力。此外,它们表现出更强的平行于PS/PTPA界面排列的趋势。而且,我们证明了纳米棒表面活性剂在制备仅需要极低浓度导电聚合物的导电聚合物共混膜中的成功应用。据我们所知,这是关于纳米棒增容剂在聚合物共混物中的纵横比效应的首次实验报告。

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