English

The Development of Wearable Polymer-Based Sensors: Perspectives

Applied Physics 2020-04-03 v1 Instrumentation and Detectors Medical Physics

Abstract

The development of smart polymer materials is reviewed and illustrated. Important examples of these polymers include conducting polymers, ionic gels, stimulus-response be used polymers, liquid crystalline polymers and piezoelectric materials, which have desirable properties for use in wearable sensors. This review outlines the mode of action in these types of smart polymers systems for utilisation as wearable sensors. Categories of wearable sensors are considered as tattoo-like designs, patch-like, textile-based, and contact lens-based sensors. The advantages and disadvantages of each sensor types are considered together with information on the typical performance. The research gap linking smart polymer materials to wearable sensors with integrated power systems is highlighted. Smart polymer systems may be used as part of a holistic approach to improve wearable devices and accelerate the integration of wearable sensors and power systems, particularly in health care.

Keywords

Cite

@article{arxiv.2003.00956,
  title  = {The Development of Wearable Polymer-Based Sensors: Perspectives},
  author = {Christian Harito and Listya Utari and Budi Riza Putra and Brian Yuliarto and Setyo Purwanto and Syed S. J. Zaidi and Dmitry V. Bavykin and Frank Marken and Frank C. Walsh},
  journal= {arXiv preprint arXiv:2003.00956},
  year   = {2020}
}
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