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首页> 外文期刊>Journal of Materials Science >Hardener type as critical parameter for the electrical properties of epoxy resin/polyaniline blends
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Hardener type as critical parameter for the electrical properties of epoxy resin/polyaniline blends

机译:硬化剂类型是环氧树脂/聚苯胺共混物电性能的关键参数

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摘要

Epoxy resin/polyaniline-salt (EP/PANI-DBSA) blends were prepared and cured with different types of hardeners. The effect of hardener type on the volume resistivity of the blends was investigated. It was found out that acidic curing agents support the conductive character of polyaniline, while alkaline hardeners conflict this property. Moreover, colour changes of the mixtures after the addition of the hardener revealed possible transformation of the conductive PANI-DBSA salt to the nonconductive PANI base form. An UV-vis analysis confirmed these assumptions. Despite of the acidic character of the anhydride type hardener, low conductivity was obtained. This was related to its insufficient curing action in the presence of PANI-DBSA. Furthermore, IR spectra of EP/PANI-DBSA blends varying the hardener type and the wt% of PANI-salt (< 10 wt%) were recorded. These indicate a possible connection of the shoulder creation at the 1585 cm− 1 band, spectral region 1575 to 1560 cm− 1, with the degree of volume resistivity.
机译:制备了环氧树脂/聚苯胺盐(EP / PANI-DBSA)共混物,并用不同类型的硬化剂进行了固化。研究了硬化剂类型对共混物体积电阻率的影响。已经发现,酸性固化剂支持聚苯胺的导电特性,而碱性固化剂则与此特性冲突。此外,在添加硬化剂之后混合物的颜色变化表明导电PANI-DBSA盐可能转化为非导电PANI碱形式。紫外可见分析证实了这些假设。尽管酸酐型固化剂具有酸性,但仍获得低电导率。这与在PANI-DBSA存在下固化作用不足有关。此外,记录了改变硬化剂类型和PANI盐的重量百分比(<10重量%)的EP / PANI-DBSA共混物的红外光谱。这些表明可能在1585 cm-1 sups波段,光谱范围1575到1560 cm-1 1ssup处的肩部建立与体积电阻率的联系。

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  • 来源
    《Journal of Materials Science》 |2005年第3期|569-574|共6页
  • 作者单位

    Institut für Verbundwerkstoffe GmbH Technische Universität Kaiserslautern Erwin-Schrödinger-Straße;

    Institut für Verbundwerkstoffe GmbH Technische Universität Kaiserslautern Erwin-Schrödinger-Straße;

    Institut für Verbundwerkstoffe GmbH Technische Universität Kaiserslautern Erwin-Schrödinger-Straße;

    Institut für Verbundwerkstoffe GmbH Technische Universität Kaiserslautern Erwin-Schrödinger-Straße;

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