Theoretical and Natural Science

- The Open Access Proceedings Series for Conferences


Theoretical and Natural Science

Vol. 27, 20 December 2023


Open Access | Article

Research progress of wearable temperature sensor based on electronic skin

Baoyang Han * 1
1 Sichuan University

* Author to whom correspondence should be addressed.

Theoretical and Natural Science, Vol. 27, 52-59
Published 20 December 2023. © 2023 The Author(s). Published by EWA Publishing
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Citation Baoyang Han. Research progress of wearable temperature sensor based on electronic skin. TNS (2023) Vol. 27: 52-59. DOI: 10.54254/2753-8818/27/20240671.

Abstract

The rapid development of science and technology has led to an increasing demand for new sensors, among which wearable temperature sensors based on electronic skin have played a particularly important role in artificial limbs and intelligent robots. This paper introduces the physical structure and working principle of wearable temperature sensor based on electronic skin. In this part, it focuses on two models of electrical signal changes caused by temperature changes. At the same time, the circuit structure and signal transmission and signal processing mode are also mentioned. This paper also introduces the characteristics of the material used in order to achieve direct contact with the human body. Some researchers’ work is also introduced, including accurate and linear reflection of temperature changes, fast response, durable use, and resistance to external interference, etc. The researchers’ research on the realization of the above functions is mentioned in the paper. Finally, the practical application and future prospect of this type of temperature sensor are introduced. In addition, some more mature technologies for the preparation of such wearable temperature sensors based on electronic skin are also described in this paper.

Keywords

Temperature, Biosensor, Thermal Resistance, Electronic Skin

References

1. Liao J, Yang H, Sun P, Gong J, Wu Q, Wu J 2022 China Academic Journal Electronic Publishing House 12

2. Li Q, Zhang L, Tao X and Ding X 2017 Advanced Healthcare Materials 6(12)

3. Wang Y, Zhu M, Wei X, Yu J, Li Z and Ding B 2021 Chemical Engineering Journal 425 130599

4. Miao X, Gao X, Su K, Li Y and Yang Z 2022 Micromachines 13 1873

5. Li W 2021 Inspection & Testing Department, China Aviation Development Guizhou Liyang Aviation Power Co., Guizhou 550000, China

6. Chen B 2022 University of Electronic Science and Technology of China, Research on Wearable Flexible Temperature Sensor

7. Ma Z, Li S, Wang H, Cheng W, Li Y, Pan L and Shi Y 2017 Journal of Materials Chemistry B 7 173

8. Yu M 2021 Harbin University of Science and Technology, Design and Sensitivity Characterization of Flexible Temperature Sensor

9. Han W, He H, Zhang L, Dong C, Zeng H, Dai Y, Xing L, Zhang Y and Xue X 2017 Appl. Mater. Interfaces 9 35

10. Shin J, Jeong B, Kim J, Nam V, Yoon Y, Jung J, Hong S, Lee H, Eom H, Yeo J, Choi J, Lee D and Ko S 2019 Adv. Mater 1905527

11. Li R 2022 Harbin Institute of Technology, Research on Dual-function E-skin with Pressure and Temperature Perception

12. Chen L 2022 East China Normal University, Research on human body temperature monitoring system based on flexible temperature sensor

Data Availability

The datasets used and/or analyzed during the current study will be available from the authors upon reasonable request.

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Volume Title
Proceedings of the 2nd International Conference on Modern Medicine and Global Health
ISBN (Print)
978-1-83558-237-4
ISBN (Online)
978-1-83558-238-1
Published Date
20 December 2023
Series
Theoretical and Natural Science
ISSN (Print)
2753-8818
ISSN (Online)
2753-8826
DOI
10.54254/2753-8818/27/20240671
Copyright
20 December 2023
Open Access
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited

Copyright © 2023 EWA Publishing. Unless Otherwise Stated