Jahanshahi Amir, Salvo Pietro, Vanfleteren Jan
Centre for Microsystems Technology (CMST), IMEC–Ghent University, Technologiepark 914a, B-9052 Ghent, Belgium.
Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:6007-10. doi: 10.1109/EMBC.2012.6347363.
Stretchable and curvilinear electronics has been used recently for the fabrication of micro systems interacting with the human body. The applications range from different kinds of implantable sensors inside the body to conformable electrodes and artificial skins. One of the key parameters in biocompatible stretchable electronics is the fabrication of reliable electrical interconnects. Although very recent literature has reported on the reliability of stretchable interconnects by cyclic loading, work still needs to be done on the integration of electrical circuitry composed of rigid components and stretchable interconnects in a biological environment. In this work, the feasibility of a developed technology to fabricate simple electrical circuits with meander shaped stretchable interconnects is presented. Stretchable interconnects are 200 nm thin Au layer supported with polyimide (PI). A stretchable array of light emitting diodes (LEDs) is embedded in biocompatible elastomer using this technology platform and it features a 50% total elongation.
可拉伸且呈曲线状的电子器件近来已被用于制造与人体相互作用的微系统。其应用范围涵盖从体内各种可植入传感器到贴合型电极及人造皮肤。生物相容性可拉伸电子器件的关键参数之一是制造可靠的电气互连。尽管最近的文献报道了通过循环加载实现可拉伸互连的可靠性,但在生物环境中由刚性组件和可拉伸互连组成的电路集成方面仍需开展工作。在这项工作中,展示了一种利用蜿蜒形可拉伸互连制造简单电路的已开发技术的可行性。可拉伸互连是由聚酰亚胺(PI)支撑的200纳米厚金层。利用该技术平台,一个可拉伸的发光二极管(LED)阵列被嵌入生物相容性弹性体中,其总伸长率为50%。