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机械转化电子、传感器和可植入设备。

Mechanically transformative electronics, sensors, and implantable devices.

机构信息

School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

Welfare & Medical ICT Research Department, Electronics and Telecommunications Research Institute, Daejeon 34129, Republic of Korea.

出版信息

Sci Adv. 2019 Nov 1;5(11):eaay0418. doi: 10.1126/sciadv.aay0418. eCollection 2019 Nov.

Abstract

Traditionally, electronics have been designed with static form factors to serve designated purposes. This approach has been an optimal direction for maintaining the overall device performance and reliability for targeted applications. However, electronics capable of changing their shape, flexibility, and stretchability will enable versatile and accommodating systems for more diverse applications. Here, we report design concepts, materials, physics, and manufacturing strategies that enable these reconfigurable electronic systems based on temperature-triggered tuning of mechanical characteristics of device platforms. We applied this technology to create personal electronics with variable stiffness and stretchability, a pressure sensor with tunable bandwidth and sensitivity, and a neural probe that softens upon integration with brain tissue. Together, these types of transformative electronics will substantially broaden the use of electronics for wearable and implantable applications.

摘要

传统上,电子产品的设计采用静态外形因素来满足特定用途。这种方法是维持针对特定应用的整体设备性能和可靠性的最佳方向。然而,能够改变形状、灵活性和可拉伸性的电子产品将为更多样化的应用提供多功能和适应性强的系统。在这里,我们报告了设计理念、材料、物理和制造策略,这些策略使基于设备平台机械特性的温度触发调谐的这些可重构电子系统成为可能。我们将这项技术应用于创建具有可变硬度和可拉伸性的个人电子产品、具有可调带宽和灵敏度的压力传感器,以及与脑组织集成后会变软的神经探针。总的来说,这些变革性电子产品将大大拓宽电子产品在可穿戴和植入式应用中的使用。

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