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Conductive Elastomers for Stretchable Electronics, Sensors and Energy Harvesters

机译:可拉伸电子,传感器和能量收集器的导电弹性体

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摘要

There have been a wide variety of efforts to develop conductive elastomers that satisfy both mechanical stretchability and electrical conductivity, as a response to growing demands on stretchable and wearable devices. This article reviews the important progress in conductive elastomers made in three application fields of stretchable technology: stretchable electronics, stretchable sensors, and stretchable energy harvesters. Diverse combinations of insulating elastomers and non-stretchable conductive materials have been studied to realize optimal conductive elastomers. It is noted that similar material combinations and similar structures have often been employed in different fields of application. In terms of stretchability, cyclic operation, and overall performance, fields such as stretchable conductors and stretchable strain/pressure sensors have achieved great advancement, whereas other fields like stretchable memories and stretchable thermoelectric energy harvesting are in their infancy. It is worth mentioning that there are still obstacles to overcome for the further progress of stretchable technology in the respective fields, which include the simplification of material combination and device structure, securement of reproducibility and reliability, and the establishment of easy fabrication techniques. Through this review article, both the progress and obstacles associated with the respective stretchable technologies will be understood more clearly.
机译:响应于对可拉伸和可穿戴设备的日益增长的需求,已经进行了各种各样的努力来开发满足机械拉伸性和导电性的导电弹性体。本文回顾了在可拉伸技术的三个应用领域中制造的导电弹性体的重要进展:可拉伸电子器件,可拉伸传感器和可拉伸能量收集器。已经研究了绝缘弹性体和不可拉伸的导电材料的各种组合以实现最佳的导电弹性体。注意,在不同的应用领域中经常采用相似的材料组合和相似的结构。在可拉伸性,循环操作和整体性能方面,诸如可拉伸导体和可拉伸应变/压力传感器等领域已经取得了长足的进步,而诸如可拉伸存储器和可拉伸热电能量收集等其他领域才刚刚起步。值得一提的是,可拉伸技术在各个领域的进一步发展仍需克服障碍,包括简化材料组合和设备结构,确保可重复性和可靠性以及建立易于制造的技术。通过这篇评论文章,将更加清楚地了解与各个可伸缩技术相关的进展和障碍。

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