School of Industrial Engineering , Purdue University , 315 N. Grant Street , West Lafayette , Indiana 47907 , United States.
Department of Animal Sciences , Purdue University , 270 S. Russell Street , West Lafayette , Indiana 47907 , United States.
ACS Appl Mater Interfaces. 2018 Sep 19;10(37):31061-31068. doi: 10.1021/acsami.8b11020. Epub 2018 Sep 6.
Traditional manufacturing methods and materials used to fabricate epidermal electronics for physiological monitoring, transdermal stimulation, and therapeutics are complex and expensive, preventing their adoption as single-use medical devices. This work describes the fabrication of epidermal, paper-based electronic devices (EPEDs) for wearable and implantable applications by combining the spray-based deposition of silanizing agents, highly conductive nanoparticles, and encapsulating polymers with laser micromachining. EPEDs are inexpensive, stretchable, easy to apply, and disposable by burning. The omniphobic character and fibrous structure of EPEDs make them breathable, mechanically stable upon stretching, and facilitate their use as electrophysiological sensors to record electrocardiograms, electromyograms, and electrooculograms, even under water. EPEDs can also be used to provide thermotherapeutic treatments to joints, map temperature spatially, and as wirelessly powered implantable devices for stimulation and therapeutics. This work makes epidermal electronic devices accessible to high-throughput manufacturing technologies and will enable the fabrication of a variety of wearable medical devices at a low cost.
传统的制造方法和材料用于制造用于生理监测、经皮刺激和治疗的表皮电子产品,这些方法和材料复杂且昂贵,这阻碍了它们作为一次性医疗器械的采用。这项工作描述了通过将基于喷雾的硅烷化剂、高导电性纳米粒子和封装聚合物的沉积与激光微加工相结合,来制造用于可穿戴和可植入应用的表皮、基于纸张的电子器件 (EPED)。EPED 价格低廉、具有弹性、易于应用,并且可以通过燃烧来实现一次性使用。EPED 的疏油性和纤维状结构使它们具有透气性,在拉伸时机械稳定,并便于用作电生理传感器来记录心电图、肌电图和眼电图,即使在水下也是如此。EPED 还可用于为关节提供热疗治疗、空间温度映射以及作为用于刺激和治疗的无线供电植入式设备。这项工作使表皮电子设备能够应用于高通量制造技术,并能够以低成本制造各种可穿戴医疗设备。