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Cu-EGaIn enabled stretchable e-skin for interactive electronics and CT assistant localization

机译:CU-EGAIN为互动电子和CT辅助定位的启用可拉伸的电子皮肤

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摘要

Electronic skin (e-skin) is attracting huge attention due to its promising applications in diverse fields, including biomimetic machines, artificial intelligence and smart robotics. However, most e-skin circuits involve complicated fabrication processes and high costs. Here, a simple, fast fabrication method for highly conductive (6 x 10(6)S m(-1)) and stretchable (above 100%) e-skin based on the adhesion selectivity of a semi-liquid metal (Cu-EGaIn) on laser printed toner and a polymethacrylate (PMA) coating is developed. The stretchable e-skin circuits are shown to transfer to human skin and 3D substrates as wearable electronics for a variety of applications, such as temperature monitoring, interactive devices, and flexible displays. Different from other liquid metal patterning techniques that require expensive equipment or rigid metal traces such as silver nanoparticles, this approach can be used to directly print Cu-EGaIn on a stretchable substrate with a commercial laser printer in seconds. Further, by virtue of the advantage of the high radiological imaging capability of Cu-EGaIn, the e-skin is patterned as a computed tomography (CT) assistant localization marker, which is demonstrated to be very helpful for doctors and surgical robots to efficiently localize a biopsy, which is a core issue in clinics. The present study holds promise for future health care, surgical guidance and personalized entertainment.
机译:电子皮肤(E-SKIN)由于其在不同领域的有前途的应用而引起了巨大的关注,包括仿生机,人工智能和智能机器人。然而,大多数电子皮肤电路涉及复杂的制造过程和高成本。这里,基于半液态金属的粘附选择性(Cu-Egain的粘合选择性)在激光印刷调色剂上,开发了聚甲基丙烯酸酯(PMA)涂层。可拉伸的E-SKIN电路被示出为人体皮肤和3D基板作为可穿戴电子设备转移到各种应用,例如温度监测,交互设备和柔性显示器。与其他液体金属图案化技术不同,需要昂贵的设备或刚性金属痕迹,例如银纳米颗粒,这种方法可用于在几秒钟内用商业激光打印机直接在可伸展基板上打印Cu-Egain。此外,借助于Cu-Egain的高放射成像能力的优点,E-Sk皮肤被图案化为计算机断层扫描(CT)辅助定位标记,这对医生和手术机器人有帮助以有效地本地化非常有帮助一种活组织检查,这是诊所的核心问题。本研究持有未来的医疗保健,手术指导和个性化娱乐。

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