3D Printed Stretchable Tactile Sensors.

3D Printed Stretchable Tactile Sensors.
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DOI:
10.1002/adma.201701218
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发表时间:
2017-07
期刊:
Advanced materials (Deerfield Beach, Fla.)
影响因子:
--
通讯作者:
McAlpine MC
McAlpine MC
中科院分区:
其他
文献类型:
--
作者:
Guo SZ;Qiu K;Meng F;Park SH;McAlpine MC

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多功能设备的3D打印方法的发展可能会影响从可穿戴电子设备和能量收集设备到智能假肢和人机界面等领域。近年来,随着功能材料和制造工艺的进步,可拉伸电子器件的发展已经加速。特别是,已经开发出新的策略,以绕过传统微制造技术的机械和热限制的方式,使可穿戴电子设备与人体皮肤紧密结合。本文采用多材料、多尺度、多功能的3D打印方法,在环境条件下在自由曲面上共形制造三维触觉传感器。该定制传感器具有检测和区分人体运动的能力,包括脉搏监测和手指运动。功能材料和设备的定制3D打印为可穿戴电子系统中各种传感器的生物集成以及先进的仿生皮肤应用开辟了新的途径。
The development of methods for the 3D printing of multifunctional devices could impact areas ranging from wearable electronics and energy harvesting devices to smart prosthetics and human–machine interfaces. Recently, the development of stretchable electronic devices has accelerated, concomitant with advances in functional materials and fabrication processes. In particular, novel strategies have been developed to enable the intimate biointegration of wearable electronic devices with human skin in ways that bypass the mechanical and thermal restrictions of traditional microfabrication technologies. Here, a multimaterial, multiscale, and multifunctional 3D printing approach is employed to fabricate 3D tactile sensors under ambient conditions conformally onto freeform surfaces. The customized sensor is demonstrated with the capabilities of detecting and differentiating human movements, including pulse monitoring and finger motions. The custom 3D printing of functional materials and devices opens new routes for the biointegration of various sensors in wearable electronics systems, and toward advanced bionic skin applications.
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