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Nanodiamond-mediated crystallization in fibers of PANI nanocomposites produced by template-free polymerization : conductive and thermal properties of the fibrillar networks

机译:纳米金刚石介导的无模板聚合生产的PANI纳米复合材料纤维中的结晶:原纤维网络的导电和热学性质

摘要

The detonation nanodiamond is a novel versatile nanomaterial with tunable properties and surface chemistry. In this work, we report on a template-free method to synthesize polyaniline based nanocomposite fibers during a chemical oxidative precipitation polymerization where the cooperative interactions between nanodiamond and polyaniline nucleates trigger the final morphology of the nanocomposite. FE–SEM and TEM observations evidence the prominent growth of fibril-like structures assembled in 2-D networks of tightly woven, partially oriented fibers. Optical and Raman spectroscopy and X-ray diffraction analyses reveal that the polymer chains are in a protonated emeraldine form and organize themselves in a highly ordered 3-D spatial arrangement. Conductivity measurements performed on isolated fibers by a conductive tip of an AFM apparatus highlight that the diamond filler does not affect the conductive properties of the polyaniline matrix while increases the thermal stability of the polymer as confirmed by TGA studies.
机译:爆轰纳米金刚石是一种具有可调性和表面化学性质的新型多功能纳米材料。在这项工作中,我们报告了一种在化学氧化沉淀聚合过程中合成基于聚苯胺的纳米复合纤维的无模板方法,其中纳米金刚石和聚苯胺核之间的协同相互作用触发了纳米复合材料的最终形态。 FE–SEM和TEM观察证明,紧密编织的部分定向纤维的二维网络中组装的原纤维状结构显着增长。光学和拉曼光谱以及X射线衍射分析表明,聚合物链呈质子化的翡翠形式,并以高度有序的3D空间排列形式组织起来。由TFM研究证实,通过AFM设备的导电尖端对隔离的纤维进行的电导率测量表明,金刚石填料不会影响聚苯胺基质的导电性能,同时会增加聚合物的热稳定性。

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