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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Novel phthalocyanine crystals as a conductive filler in crosslinked epoxy materials: Fractal particle networks and low percolation thresholds
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Novel phthalocyanine crystals as a conductive filler in crosslinked epoxy materials: Fractal particle networks and low percolation thresholds

机译:新型酞菁晶体作为交联环氧材料中的导电填料:分形粒子网络和低渗透阈值

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摘要

Novel nanosized crystals of aquocyanophthalocyaninatocobalt (III) (Phthalcon 11) were used as a conductive filler in crosslinked epoxy materials. The crosslinked composite materials had a very low percolation threshold (phi(c), 0.9 vol %). The relationship between the volume conductivity and the filler fraction follows the scaling law of the percolation theory and suggests that the conducting particle networks were formed by random percolation of primary aggregates. The occurrence of the low pc can be explained by the presence of a fractal Phthalcon 11 particle network formed from fractal aggregates during crosslinking. The position of the percolation threshold and the volume conductivity of these crosslinked materials were found to depend heavily on the processing conditions applied. These dependencies are explained in terms of specific particle-matrix interactions and the particle-particle interactions and by taking into account different mechanisms of particle network formation. (c) 2005 Wiley Periodicals, Inc.
机译:新型的氰基酞菁酞菁钴纳米盐(III)(Phthalcon 11)被用作交联环氧材料中的导电填料。交联的复合材料具有非常低的渗透阈值(phi(c),0.9体积%)。体积电导率和填料分数之间的关系遵循渗滤理论的比例定律,表明导电粒子网络是由初级聚集体的随机渗滤形成的。低pc的发生可以通过在交联过程中由分形聚集体形成的分形Phthalcon 11粒子网络来解释。发现这些交联材料的渗透阈值的位置和体积电导率在很大程度上取决于所应用的加工条件。这些依赖性通过特定的粒子-基体相互作用和粒子-粒子间相互作用并考虑了粒子网络形成的不同机制进行了解释。 (c)2005年Wiley Periodicals,Inc.

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