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"Metal Oxide Semiconductor Nanomembrane-Based Soft Unnoticeable Multifunctional Electronics for Wearable Human-Machine Interfaces" Abstract: Wearable human-machine interfaces (HMIs) are an important class of devices that enable human and machine interaction and teaming. Recent advances in electronics, materials, and mechanical designs have offered avenues toward wearable HMI devices. However, existing wearable HMI devices are uncomfortable to use and restrict the human body's motion, show slow response times, or are challenging to realize with multiple functions. Here, the authors report sol-gel-on-polymer-processed indium zinc oxide semiconductor nanomembrane-based ultrathin stretchable electronics with advantages of multi-functionality, simple manufacturing, imperceptible wearing, and robust interfacing. Multifunctional wearable HMI devices range from resistive random-access memory for data storage to field-effect transistors for interfacing and switching circuits, to various sensors for health and body motion sensing, and to microheaters for temperature delivery. HMI devices can be not only seamlessly worn by humans but also implemented as prosthetic skin for robotics, which offer intelligent feedback, resulting in a closed-loop HMI system.
机译:“可穿戴人机界面的金属氧化物半导体型软不可于多功能多功能电子产品”摘要:可穿戴人机界面(HMI)是一种重要的设备,使人类和机器互动和团队能够实现。电子,材料和机械设计的最新进展已经为可穿戴HMI设备提供了途径。然而,现有的可穿戴HMI设备使用和限制人体运动,显示缓慢的响应时间,或者具有挑战性地实现多种功能。在此,作者将溶胶 - 凝胶 - 溶胶 - 聚合物加工铟锌氧化物半导体纳米膜的超薄拉伸电子器件具有多功能,简单的制造,难以佩戴和鲁棒的接口的优点。多功能可穿戴HMI器件从电阻随机存取存储器的数据存储到用于接口和开关电路的现场效应晶体管,以用于健康和身体运动感测的各种传感器,以及用于温度递送的微热器。 HMI设备不仅可以被人类无缝佩戴,而且还实现了机器人的假体皮,提供智能反馈,从而产生闭环HMI系统。

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