Sustainable, Alternative Conductive Fillers for Flexible Electronics: Investigation of Filler Size on Morphological and Electrical Properties of Styrene-[Ethylene-(Ethylene-Propylene)]-Styrene Block Copolymer (SEEPS) Composites

M. S. Cetin, O. Toprakci, H. A. Karahan Toprakci
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Abstract

Sustainability is getting popular for many engineering applications from packaging to textiles, energy to electronics. Since renewable, environmental friendly sources lowers the negative impacts of the end product on ecology, sustainability studies generally start with the raw materials. The sustainability of electronic materials has gained importance because of limited amount of resources and increasing costs as well as environmental restrictions. In this study, pistachio shell waste was used to synthesize conductive fillers for the fabrication of sustainable flexible electronics. Pistachio shell waste was carbonized. After carbonization, two different grounding settings were used to obtain different filler sizes. In order to compare the effects of filler size on electrical and morphological properties of the composites, six different samples were prepared based on filler concentration with styrene-[ethylene-(ethylene-propylene)]-styrene block copolymer. Homogeneous filler distribution and good filler-matrix interface were observed for both composite sets. Filler size was found significant in terms of the electrical conductivity of the composites. For larger fillers, the percolation region was found to shift to lower concentration compared to smaller filler size.
柔性电子领域的可持续替代导电填料:填料尺寸对苯乙烯-[乙烯-(乙烯-丙烯)]-苯乙烯嵌段共聚物(SEEPS)复合材料形态和电学性能的影响
从包装到纺织品,从能源到电子产品,可持续性在许多工程应用中越来越受欢迎。由于可再生、环境友好的资源降低了最终产品对生态的负面影响,因此可持续性研究通常从原材料开始。由于有限的资源和不断增加的成本以及环境限制,电子材料的可持续性变得越来越重要。本研究利用开心果壳废弃物合成导电填料,用于制造可持续柔性电子器件。开心果壳废料被碳化。碳化后,采用两种不同的接地设置,得到不同的填料尺寸。为了比较填料尺寸对复合材料电学和形态性能的影响,采用不同填料浓度的苯乙烯-[乙烯-(乙烯-丙烯)]-苯乙烯嵌段共聚物制备了6种不同的样品。两种复合材料的填料分布均匀,填料-基体界面良好。填料尺寸对复合材料的导电性有显著影响。对于较大的填料,发现渗透区域转移到较低的浓度相比,较小的填料尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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