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Electrical conductivity and optical properties of polyanilihe intercalated graphite oxide nanocomposites

机译:聚苯胺和插层式氧化石墨纳米复合材料的电导率和光学性质

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摘要

Layered graphite oxide is used as host material for the synthesis of conducting polymer intercalated nanocomposites. Powder X-ray diffraction, Fourier transform infrared, and UV-VIS absorption spectra indicate the formation of polyaniline within the interlamellar spaces of graphite oxide. The red shift of UV-VIS absorption associated with graphite oxide is found. The direct current (dc) conductivity increases by about three orders of magnitude compare with pristine graphite oxide. The temperature dependence dc conductivity of the nanocomposite follows Mott's three-dimensional variable range hopping. The alternating current (ac) conductivity suggests correlated barrier hopping of conduction process. The conductivity relaxation time varies in the range of 10(-5)-10(-7) sec.
机译:层状氧化石墨用作合成导电聚合物插层纳米复合材料的主体材料。粉末X射线衍射,傅立叶变换红外和UV-VIS吸收光谱表明聚苯胺在氧化石墨的层间空间内形成。发现与氧化石墨有关的UV-VIS吸收的红移。与原始氧化石墨相比,直流电(dc)的电导率增加了大约三个数量级。纳米复合材料的温度依赖性直流电导率遵循Mott的三维可变范围跳跃。交流电(ac)的导电性暗示了导电过程的相关势垒跳跃。电导率松弛时间在10(-5)-10(-7)秒的范围内变化。

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