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Preparation and properties of conducting composites of polypyrrole and porous cross-linked polystyrene with and without supercritical carbon dioxide

机译:有和没有超临界二氧化碳的聚吡咯和多孔交联聚苯乙烯导电复合材料的制备和性能

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摘要

Composites of polypyrrole (PPy) and porous cross-linked polystyrene (PCPS) were prepared using a two-step batch method proposed by Ruckenstein and Park. However, the solvent employed by Ruckenstein and Park (methanol) in the polymerization step of their method was replaced with supercritical CO_2. For comparison purposes, PPy/PCPS composites were also prepared using no solvent in the polymerization step. Conductivities as high as 10~-2 S cm~ -1 were obtained, with or without the use of supercritical CO_2. Uniformity of conductivity was determined via surface and bulk conductivity measurements, as well as by a new volume conductivity measurement that provides a measure of spatial (three-dimensional) distribution of the conducting component in the composite.The conductivity of composites prepared with or without the use of supercritical CO_2 conformed to the same percolation behavior with respect to the amount of PPy formed. The percolation threshold in all cases was as low as 4 wt. percent . The mechanical strength of the composites was found to be about the same as that of the host PCPS, as was the thermal stability. Therefore, the conductive component did not appear to adversely affect these properties of the host. Finally, the temperature behavior of the conductivity could be correlated with Mott's variable-range hopping (VRH) model for three-dimensional electronic transport.
机译:聚吡咯(PPy)和多孔交联聚苯乙烯(PCPS)的复合材料是使用Ruckenstein和Park提出的两步分批方法制备的。但是,Ruckenstein和Park在其方法的聚合步骤中使用的溶剂(甲醇)被超临界CO_2取代。为了进行比较,在聚合步骤中也没有溶剂也制备了PPy / PCPS复合材料。无论是否使用超临界CO_2,电导率均高达10〜-2 S cm〜-1。通过表面和整体电导率测量以及新的体积电导率测量来确定电导率的均匀性,该测量方法可以测量复合材料中导电组分的空间(三维)分布。关于超临界CO 2的使用,相对于形成的PP y的量,其渗滤行为相同。在所有情况下的渗透阈值都低至4重量%。百分 。发现复合材料的机械强度与热稳定性一样,与主体PCPS的机械强度相同。因此,导电组分似乎没有对基质的这些性质产生不利影响。最后,电导率的温度行为可以与三维电子传输的Mott变程跳变(VRH)模型相关。

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