Literature DB >> 30917090

High-Performance Liquid Alloy Patterning of Epidermal Strain Sensors for Local Fine Skin Movement Monitoring.

Bei Wang1,2, Kang Wu1, Klas Hjort2, Chuanfei Guo3, Zhigang Wu1,2.   

Abstract

Nowadays, stretchable/epidermal electronics based on liquid alloys has attracted more and more attention, and various processing techniques have subsequently been developed to demonstrate diverse applications never seen before. However, to fully exploit its potential advantages, epidermal electronics is still searching for a technique meeting all demands on resolution, pattern complexity, and operational flexibility. In this study, we propose a technique that allows for complex and high-density patterns on thin stretchable substrates by combining ultraviolet laser patterning of a modified water-soluble mask, atomized spray deposition of liquid alloys on a flexible temporary substrate, lift-off by water dissolving, and finally, component integration and encapsulation. With this new technique, it was possible to make epidermal precision strain sensors with liquid alloy patterns of high density, which were capable of monitoring fine local skin movements such as the detailed process of wrinkle formation as well as the overall motion of the body part. In addition, this process is highly efficient and well controllable, with high potential for possible industrial automation and massive production.

Entities:  

Keywords:  epidermal strain sensor; laser patterning soluble mask; liquid alloy patterning; local strain sensor; skin movement; two-dimensional strain sensor

Year:  2019        PMID: 30917090     DOI: 10.1089/soro.2018.0008

Source DB:  PubMed          Journal:  Soft Robot        ISSN: 2169-5172            Impact factor:   8.071


  1 in total

1.  A double-layered liquid metal-based electrochemical sensing system on fabric as a wearable detector for glucose in sweat.

Authors:  Xuanqi Chen; Hao Wan; Rui Guo; Xinpeng Wang; Yang Wang; Caicai Jiao; Kang Sun; Liang Hu
Journal:  Microsyst Nanoeng       Date:  2022-05-07       Impact factor: 8.006

  1 in total

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