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Self-stabilized nanoparticles of intrinsically conducting copolymers from 5-sulfonic-2-anisidine

机译:5-磺酸-2-茴香胺固有导电共聚物的自稳定纳米颗粒

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摘要

Novel copolymer nanoparticles with inherent self-stability, narrow size distribution, and high electrical conditctivity are facilely and productively synthesized by the oxidative precipitation polymerization of 5-sulfonic-2-anisidine and aniline in acidic medium without any external stabilizer. The structures of the copolymer particles are systematically by fraction, laser characterized by IR and UV/Vis spectroscopy, X-ray diffraction, laser particle-size analysis, atomic force microscopy, field-emission scanning electron microscopy, and high-resolution transmission electron microscopy. The comonomer ratio, oxidant/monomer ratio, and polymerization temperature and medium can be used to optimize the size and conductivity of the nanoparticles. It is found that the nanoparticles exhibit a minimal size and polydispersity index of around 53 nm and 1.045, respectively. Nano-composite films of the nanoparticles with diacetyl and ethyl celluloses show good thermostability and a low percolation threshold of 0.08 wt%, at which the films retain 89% of the transparency, 96-98% of the strength, and 10(8) times the conductivity of the matrix film. The synthesis of sulfoanisidine copolymer nanoparticles is thus achieved without the use of external stabilizer, which opens lip a simple and general route to the fabrication of nanostructured polymer materials with controllable size, narrow size distribution, intrinsic self-stability, strong dispersibility, high purity, and optimizable electroconductivity.
机译:通过固有的自稳定性,窄的尺寸分布和高电导率的新型共聚物纳米粒子,可以通过在酸性介质中5-磺酸-2-苯胺和苯胺在没有任何外部稳定剂的条件下进行氧化沉淀聚合而轻松生产。共聚物颗粒的结构按组分进行系统化,通过IR和UV / Vis光谱进行激光表征,X射线衍射,激光粒度分析,原子力显微镜,场发射扫描电子显微镜和高分辨率透射电子显微镜。共聚单体比率,氧化剂/单体比率以及聚合温度和介质可用于优化纳米颗粒的尺寸和电导率。发现纳米颗粒分别具有约53nm和1.045的最小尺寸和多分散指数。具有二乙酰基和乙基纤维素的纳米颗粒的纳米复合膜显示出良好的热稳定性和0.08 wt%的低渗透阈值,在该阈值下,膜保留89%的透明度,96-98%的强度和10(8)倍基质膜的电导率。因此无需使用外部稳定剂即可完成磺基茴香胺共聚物纳米颗粒的合成,这为制备尺寸可控,尺寸分布窄,固有的自稳定性,强分散性,高纯度的纳米结构聚合物材料提供了一条简单而通用的途径和可优化的导电性。

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