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Electrical and rheological percolation threshold of graphene pastes for screen-printing

机译:用于丝网印刷的石墨烯浆料的电气和流变渗透阈值

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Purpose A comparison of electric and viscosity percolation threshold is crucial from the scientific and technical points of view to understand the features and capabilities of heterogeneous graphene composite materials and properly select the functional phase volume. Therefore, the purpose of this paper is to present the analysis of the electrical and rheological percolation thresholds in the polymer-graphene screen printing pastes and the analysis of the relation between these two parameters. Design/methodology/approach In the paper, the properties of polymer-based pastes with graphene nanoplatelets were tested: paste viscosity and printed layers conductivity. The tests of pastes with different filler content allowed to determine both the electrical and rheological percolation thresholds using power law, according to Kirkpatrick's percolation model. Findings The electrical percolation threshold for graphene nanoplatelets (GNPs) in the composite was 0.74 Vol.% when the rheological percolation threshold is observed to be at 1.00 Vol.% of nanoplatelets. The percolation threshold values calculated using the Kirkpatrick's percolation model were 0.87 and 0.5 Vol.% of GNPs in the paste for electrical and rheological percolation thresholds, respectively. Originality/value Recently, GNPs are becoming more popular as the material of the functional phase in screen printing heterophase materials, because of their unique mechanical and electrical properties. However, till date no research presented in the literature is related to the direct comparison of both the electrical and rheological percolation thresholds. Such analysis is important for the optimization of the printing process toward the highest quality of printed conductive paths, and finally the best electrical properties.
机译:目的从科学和技术角度比较电渗透阈值和粘滞渗透阈值对于了解异质石墨烯复合材料的特性和功能并适当选择功能相体积至关重要。因此,本文的目的是提供聚合物-石墨烯丝网印刷浆料中电和流变渗透阈值的分析以及这两个参数之间的关系分析。设计/方法/方法在本文中,测试了具有石墨烯纳米片的聚合物基浆料的性能:浆料粘度和印刷层电导率。根据柯克帕特里克(Kirkpatrick)的渗流模型,通过对不同填料含量的糊剂进行测试,可以利用幂律确定电渗流阈值和流变渗流阈值。结果当流变渗透阈值为纳米血小板的1.00 Vol。%时,复合材料中石墨烯纳米血小板(GNP)的电渗透阈值为0.74 Vol。%。对于电和流变渗透阈值,使用柯克帕特里克(Kirkpatrick)渗透模型计算的渗透阈值分别为糊剂中GNP的0.87和0.5 Vol。%。独创性/价值近来,由于GNP具有独特的机械和电气特性,它们在丝网印刷异相材料中作为功能相的材料变得越来越流行。然而,迄今为止,文献中没有任何研究与电和流变渗透阈值的直接比较有关。这样的分析对于优化印刷工艺以实现最高质量的印刷导电路径以及最终实现最佳的电性能至关重要。

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