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Characterizations of glycerol plasticized-starch (GPS)/carbon black (CB) membranes prepared by melt extrusion and microwave radiation

机译:通过熔融挤出和微波辐射制备的甘油增塑淀粉(GPS)/炭黑(CB)膜的表征

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摘要

As electrically conductive polymer composites, glycerol plasticized-starch (GPS)/carbon black (CB) membranes are respectively prepared by melt extrusion and microwave radiation. Scanning electron microscopy shows that the electrical conductance network of CB is formed in GPS/CB membranes, prepared by microwave radiation (GPS/CB-MR). However, the agglomerates of CB particles are isolated in GPS/CB membranes, prepared by melt extrusion (GPS/CB-ME). Fourier Transform Infrared (FTIR) spectroscopy reveals that CB and GPS matrix can form the interaction in GPS/CB membranes. According to Nicho-lais-Narkis models, the reinforcing effect of CB is more obvious in GPS/CB-MR membranes than in GPS/CB-ME membranes. GPS/CB-MR membranes exhibit a low electrical percolation threshold of 2.398 vol% CB loading and the conductivity of the membrane containing 4.236 vol% CB reaches 7.08 S/cm, while GPS/CB-ME membranes shows a very low conductivity of 10~(-8) S/cm at the high CB content. In addition, GPS/CB-MR membranes have better water vapor barrier than GPS/CB-ME membranes.
机译:作为导电聚合物复合材料,分别通过熔融挤出和微波辐射制备甘油增塑淀粉(GPS)/炭黑(CB)膜。扫描电子显微镜显示,CB的电导网络形成在GPS / CB膜中,该膜是通过微波辐射(GPS / CB-MR)制备的。但是,CB颗粒的团聚体是通过熔融挤出(GPS / CB-ME)在GPS / CB膜中分离的。傅立叶变换红外光谱(FTIR)揭示了CB和GPS基质可以在GPS / CB膜中形成相互作用。根据Nicho-lais-Narkis模型,CB在GPS / CB-MR膜中的增强作用比在GPS / CB-ME膜中更明显。 GPS / CB-MR膜的电渗滤阈值为2.398 vol%,CB含量为4.236 vol%的膜的电导率达到7.08 S / cm,而GPS / CB-ME膜的电导率为10〜 CB含量高时为(-8)S / cm。此外,GPS / CB-MR膜比GPS / CB-ME膜具有更好的水蒸气阻隔性。

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