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Synthesis of Various Polyaniline / Clay Nanocomposites Derived from Aniline and Substituted Aniline Derivatives by Mechanochemical Intercalation Method

机译:通过机械层间嵌入方法合成衍生自苯胺和取代的苯胺衍生物的各种聚苯胺/粘土纳米复合材料

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Polyaniline clay nanocomposite can be prepared by mechano-chemical method in which intercalation of anilinium ion into the clay lattices accomplished by mechanical grinding of sodium montmorillonite (Na+MMT) in presence of anilinium hydrochloride at room temperature using mortar & pestle for about 30 min and subsequent grinding with oxidizing agent, ammonium peroxysulfate. The appearance of green colour indicates the formation of polyaniline/clay nanocomposite (PANI/Clay). Similarly aniline derivatives likeo-toludine ando-anisidine in the form of HCl salt can form intercalation into the clay lattices. The intercalated aniline derivatives were ground mechanically in presence of oxidizing agent ammonium peroxysulfate lead to formation of substituted polyaniline/ clay nanocomposites. The characteristics of various polyaniline-clay nanocomposites were investigated using UV-Visible, FT-IR, cyclic voltammetry studies.
机译:聚苯胺粘土纳米复合材料可以通过机械化学方法制备,其中苯胺离子在通过在室温下在室温下使用砂浆和杵在室温下在室温下在室温下进行约30分钟和随后用氧化剂,过氧化氢铵研磨。绿色的外观表明聚苯胺/粘土纳米复合物(PANI /粘土)的形成。类似地,HCl盐形式的苯胺衍生物的托托胆碱和己酰胺可以形成嵌入到粘土晶格中。将嵌入的苯胺衍生物在氧化剂硫酸铵存在下磨削氧化剂硫酸铵导致形成取代的聚苯胺/粘土纳米复合材料。使用UV可见的FT-IR,循环伏安法研究研究各种聚苯胺 - 粘土纳米复合材料的特性。

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