A Highly Skin-Conformal and Biodegradable Graphene-Based Strain Sensor

Shu Wan, Zhihong Zhu, Kuibo Yin, Shi Su, Hengchang Bi, Tao Xu, Hongtao Zhang, Zhihui Shi, Longbing He, Litao Sun

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

For wearable sensors, realizing a strong and conformal contact with skin is essential to precisely detect human vital signals and enable human–machine interaction. Herein, a facile strategy is reported to fabricate a sensor with ultrahigh skin conformity by adopting a commercial make-up accessory (nose film) as the substrate and graphene as the active materials. The wearable strain sensor can be pasted on human skin at the dermatoglyph level, and the commercial make-up shows a high skin adhesion with a peel-off strength of ≈29.4 N m−1. The high adhesion as well as ultraconformity to skin results in a signal amplification of ≈14.2 times. Also, the sensor shows a similar stretchability (≈35%) to human skin (≈30%) in addition to maintaining an impressive performance with a high sensitivity and rapid response time. These characteristics are attractive for precisely monitoring human vital signals and in appliances with increased human–machine interaction. Besides, the sensor is biodegradable, being made from a nontoxic water-soluble polymer. It is most likely that biodegradable materials will be increasingly attractive due to the potential environmental problem caused by traditional nonbiodegradable polymers.

Original languageEnglish
Article number1700374
JournalSmall Methods
Volume2
Issue number10
DOIs
StatePublished - 16 Oct 2018
Externally publishedYes

Keywords

  • biodegradability
  • graphene
  • health monitoring
  • human–machine interaction
  • skin conformity

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