Electrically conductive polymer composites for smart flexible strain sensors: a critical review

Author:

Liu Hu12345ORCID,Li Qianming12345,Zhang Shuaidi12345,Yin Rui12345,Liu Xianhu12345ORCID,He Yuxin6789,Dai Kun12345ORCID,Shan Chongxin10459,Guo Jiang1112139,Liu Chuntai12345,Shen Changyu12345,Wang Xiaojing1415161718,Wang Ning1920219,Wang Zicheng1415161718,Wei Renbo222324259ORCID,Guo Zhanhu1415161718ORCID

Affiliation:

1. Key Laboratory of Materials Processing and Mold (Zhengzhou University)

2. Ministry of Education

3. National Engineering Research Center for Advanced Polymer Processing Technology

4. Zhengzhou University

5. Zhengzhou

6. College of Chemical Engineering and Pharmaceutics

7. Henan University of Science and Technology

8. Luoyang

9. China

10. School of Physics and Engineering

11. School of Materials Science & Engineering

12. Shaanxi University of Science & Technolgoy

13. Xi’an 710021

14. Integrated Composites Laboratory (ICL)

15. Department of Chemical & Biomolecular Engineering

16. University of Tennessee

17. Knoxville

18. USA

19. State Key Laboratory of Marine Resource Utilization in South China Sea

20. Hainan University

21. Haikou 570228

22. Research Branch of Advanced Functional Materials

23. School of Materials and Energy

24. University of Electronic Science and Technology of China

25. Chengdu

Abstract

Electrically conductive polymer composite-based smart strain sensors with different conductive fillers, phase morphology, and imperative features were reviewed.

Funder

National Natural Science Foundation of China

Zhengzhou University

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

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