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Fabrication of Stretchable Circuits on Polydimethylsiloxane (PDMS) Pre-Stretched Substrates by Inkjet Printing Silver Nanoparticles

机译:喷墨印刷银纳米颗粒在聚二甲基硅氧烷(PDMS)预拉伸基材上的可拉伸电路的制造

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摘要

Several research methodologies have recently been developed to allow for the patterning of conductive lines on elastomeric rubber substrates. Specifically, various conductive materials, substrates, and fabrication techniques were investigated to develop stretchable circuits. One promising technique recommends the application of axial strain on an elastomer substrate prior to patterning conductive lines on it. When the substrate is released, conductive lines buckle to form waves, making the circuit stretchable. However, the majority of applications of stretchable circuits require fitting them to two-dimensional surfaces, such as the human body. Hence, in this paper we propose the concept of radial pre-stretching of the substrates to enhance the stretchability of the fabricated circuits. In particular, straight silver conductive lines were deposited on a polydimethylsiloxane (PDMS) surface using inkjet printing technology, and subsequently tested under both axial and radial loads. Radial pre-stretching was compared to axial pre-stretching, resulting in an improved performance under radial loads. The optimal performance was achieved by pre-stretching the PDMS substrate with a radial strain of 27%. This resulted in stretchable circuits which could sustain radial loads with an average breakdown strain of approximately 19%. Additionally, horseshoe patterns were printed on radially pre-stretched PDMS substrates and their performance was compared to that of their straight line counterparts. Though these patterns are generally favorable for the fabrication of stretchable circuits, the optimal horseshoe pattern examined in this study could only sustain up to 16% radial strain on average when radially pre-stretched by 27%.
机译:最近开发了几种研究方法以允许在弹性橡胶基材上进行图案化导电线。具体地,研究了各种导电材料,基板和制造技术以开发可伸缩电路。一个有希望的技术建议在图案化导电线之前施加轴向应变在弹性体基板上的应用。当释放基板时,导电线扣以形成波,使电路拉伸。然而,拉伸电路的大部分应用需要将它们装配到二维表面,例如人体。因此,在本文中,我们提出了基板的径向预拉伸的概念,以增强制造电路的拉伸性。特别地,使用喷墨印刷技术沉积在聚二甲基硅氧烷(PDMS)表面上的直线导电线,随后在轴向和径向载荷下进行测试。将径向预拉伸与轴向预拉伸进行比较,导致径向载荷下的性能提高。通过将PDMS基板预拉伸径向菌株为27%,实现了最佳性能。这导致可拉伸电路,其可以维持径向载荷,平均击穿应变约为19%。另外,在径向预拉伸的PDMS基板上印刷马蹄形图案,并将其性能与其直线对应物的性能进行了比较。尽管这些图案通常有利于制造可拉伸电路,但是在该研究中检查的最佳马蹄形图案仅在径向预先拉伸27%时平均保持高达16%的径向菌株。

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