4.8 Article

A Bioinspired Mineral Hydrogel as a Self-Healable, Mechanically Adaptable Ionic Skin for Highly Sensitive Pressure Sensing

期刊

ADVANCED MATERIALS
卷 29, 期 22, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.201700321

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资金

  1. National Science Foundation of China (NSFC) [21674025, 51473038, 21604024]
  2. Ministry of Science & Technology of China [2016YFA0203302]
  3. Natural Science Foundation of Shanghai [17ZR1440400]
  4. Open Project of State Key Laboratory of Chemical Engineering [SKL-ChE-16C02]
  5. Chenguang Plan [16CG32]

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In the past two decades, artificial skin-like materials have received increasing research interests for their broad applications in artificial intelligence, wearable devices, and soft robotics. However, profound challenges remain in terms of imitating human skin because of its unique combination of mechanical and sensory properties. In this work, a bioinspired mineral hydrogel is developed to fabricate a novel type of mechanically adaptable ionic skin sensor. Due to its unique viscoelastic properties, the hydrogel-based capacitive sensor is compliant, self-healable, and can sense subtle pressure changes, such as a gentle finger touch, human motion, or even small water droplets. It might not only show great potential in applications such as artificial intelligence, human/machine interactions, personal healthcare, and wearable devices, but also promote the development of next-generation mechanically adaptable intelligent skin-like devices.

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