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首页> 外文期刊>Journal of the European Ceramic Society >Electrically conductive aluminosilicate/graphene nanocomposite
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Electrically conductive aluminosilicate/graphene nanocomposite

机译:导电硅铝酸盐/石墨烯纳米复合材料

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Highly electrically conductive ceramic material based on aluminosilicate/graphene nanocomposite has been prepared by high pressure (400 MPa) compaction of montmorillonite intercalated with polyaniline followed with the high temperature (1400 °C) treatment in argon atmosphere. Tablets pressed from polyaniline/montmorillonite intercalate exhibits strong texture due to the disk-shaped montmorillonite particles and, consequently, the high anisotropy in conductivity. The high temperature induced phase transformation of montmorillonite into cristobalitc and mullite preserved the aluminosilicate layered structure and created good conditions for formation of graphene sheets from polyaniline layers intercalated in montmorillonite. Therefore, the texture and anisotropy in conductivity remain preserved in resulting aluminosilicate/graphene tablets, while the in-plane conductivity in aluminosilicate/graphene tablets is 23,000× higher than the conductivity of uncalcined polyanihne/montmorillonite tablets. Simple fabrication method of aluminosilicate/graphene tablets is very promising for the manufacturing of the electrically conductive and tough ceramic material, which can be exposed to corrosive environment as well as to high temperatures.
机译:通过对嵌入聚苯胺的蒙脱石进行高压(400 MPa)压实,然后在氩气氛中进行高温(1400°C)处理,制备了基于铝硅酸盐/石墨烯纳米复合材料的高导电陶瓷材料。由聚苯胺/蒙脱土插层压制而成的片剂由于呈圆盘状蒙脱土颗粒而具有很强的质地,因此具有高的导电率各向异性。高温诱导的蒙脱石相向方石英和莫来石的相变保留了硅铝酸盐层状结构,并为从插在蒙脱石中的聚苯胺层形成石墨烯片创造了良好条件。因此,在得到的硅铝酸盐/石墨烯片中,电导率的质地和各向异性得以保留,而硅铝酸盐/石墨烯片中的面内电导率比未煅烧的聚苯胺/蒙脱土片高23,000x。铝硅酸盐/石墨烯片的简单制造方法对于导电且坚韧的陶瓷材料的制造是非常有前途的,其可以暴露于腐蚀性环境以及高温下。

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