4.8 Article

Multifunctional Glycerol-Water Hydrogel for Biomimetic Human Skin with Resistance Memory Function

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 11, 期 23, 页码 21117-21125

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b05554

关键词

antifreezing; self-healing ability; bioinspired conductive hydrogel; human-motion sensor; resistance memory performance

资金

  1. Foundation of Sichuan Youth Science and Technology [2016JQ0036]
  2. Fok Ying Tung Education Foundation [161103]
  3. Open Funds of State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation (SWPU) [PLN1201]
  4. Natural Science Foundation of Nanchong City [NC17SY4015]
  5. Innovative Research Team of Southwest Petroleum University [2017CXTD01]
  6. Australian Research Council [FT130100057]
  7. Industrial Transformation Research Hub for a Future Fibre Industry [IH140100018]
  8. Australian Research Council [FT130100057] Funding Source: Australian Research Council

向作者/读者索取更多资源

Biomimetic human skinlike materials with preferably self-healing ability, high sensitivity for external stimuli, and good adhesiveness against diverse substrates under a wide range of temperatures are of great importance in various applications such as wearable devices, human-motion devices, and soft robotics. However, most of the reported biomimetic human skinlike materials lack memory function, i.e., they cannot memorize the external stimuli once the stimuli disappear. This drawback hinders their applications in mimicking the human skin in real world. Here, a polyacrylamide/Auppolydopamine glycerol-water (GW) hydrogel has been designed to address this challenge. The as-prepared GW hydrogel exhibits a fast self-healing efficiency and good adhesiveness against diverse substrates under a wide range of temperatures (from -15 to 37 degrees C). Additionally, our GW hydrogel also possesses good perceived ability for external stimuli and subtle/large human motions. Most importantly, resistance memory function has been realized based on our GW hydrogel. These outstanding properties make it potentially significant in mimicking the human skin in real world.

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