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Electronic Skin from High-Throughput Fabrication of Intrinsically Stretchable Lead Zirconate Titanate Elastomer

机译:来自锆锆钛酸锆弹性体的高通量制备的电子皮肤

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摘要

Electronic skin made of thin, soft, stretchable devices that can mimic the human skin and reconstruct the tactile sensation and perception offers great opportunities for prosthesis sensing, robotics controlling, and human-machine interfaces. Advanced materials and mechanics engineering of thin film devices has proven to be an efficient route to enable and enhance flexibility and stretchability of various electronic skins; however, the density of devices is still low owing to the limitation in existing fabrication techniques. Here, we report a high-throughput one-step process to fabricate large tactile sensing arrays with a sensor density of 25 sensors/cm2 for electronic skin, where the sensors are based on intrinsically stretchable piezoelectric lead zirconate titanate (PZT) elastomer. The PZT elastomer sensor arrays with great uniformity and passive-driven manner enable high-resolution tactile sensing, simplify the data acquisition process, and lower the manufacturing cost. The high-throughput fabrication process provides a general platform for integrating intrinsically stretchable materials into large area, high device density soft electronics for the next-generation electronic skin.
机译:电子皮肤由薄,柔软,可伸展的装置,可以模仿人体皮肤并重建触觉感觉和感知,为假肢传感,机器人控制和人机界面提供了很大的机会。薄膜装置的先进材料和力学工程已经证明是一种有效的路线,以实现各种电子皮肤的灵活性和可拉伸性;然而,由于现有制造技术的限制,设备的密度仍然很低。在这里,我们报告了一种高通量的一步法,以制造具有25个传感器密度的大型触觉感测阵列,用于电子皮肤,传感器基于本质上拉伸的压电引线锆钛酸钛酸盐(PZT)弹性体。 PZT弹性体传感器传感器阵列具有良好的均匀性和无源驱动的方式,使得能够高分辨率触觉感测,简化数据采集过程,并降低了制造成本。高通量制造工艺提供了一般平台,用于将本质上拉伸材料集成到大面积,高器件密度软电子器件中,用于下一代电子皮肤。

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