Control of Mechanical and Electrical Properties of Stretchable Wires Printed with Conductive Pastes Composed of a Polyurethane-based Binder

M. Inoue, Hikaru Watanabe
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Abstract

This paper discussed the effect of binder chemistry on electrical conductivity variation due to the tensile deformation of stretchable wires and electrodes printed with polyurethane-based electrically conductive pastes containing silver micro-flakes. Although their electrical conductivity usually showed a significant variation during uniaxial cyclic tensions, some polyurethane-based binders, including polyhydroxyurethane, effectively suppressed the electrical conductivity variation. The polyhydroxyurethane-based wires and electrodes' electrical conductivity was significantly stabilized by mixing a cross-linking agent into the binder. Binder chemistry is one of the critical factors in developing novel electrically conductive pastes for printing stretchable wires and electrodes.
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聚氨酯基粘结剂组成的导电浆料印刷可拉伸导线的机械和电气性能控制
本文讨论了粘合剂化学对用含银微片的聚氨酯基导电浆料印刷的可拉伸导线和电极的拉伸变形引起的电导率变化的影响。虽然它们的电导率在单轴循环张力下通常表现出显著的变化,但一些聚氨酯基粘合剂,包括聚羟基聚氨酯,有效地抑制了电导率的变化。通过在粘合剂中加入交联剂,聚羟基聚氨酯基导线和电极的导电性得到了显著的稳定。粘结剂化学是开发用于印刷可拉伸导线和电极的新型导电浆料的关键因素之一。
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