Recent Progress in Conducting Polymer Composite/Nanofiber-Based Strain and Pressure Sensors

Author:

Veeramuthu LoganathanORCID,Venkatesan Manikandan,Benas Jean-Sebastien,Cho Chia-Jung,Lee Chia-Chin,Lieu Fu-Kong,Lin Ja-HonORCID,Lee Rong-HoORCID,Kuo Chi-ChingORCID

Abstract

The Conducting of polymers belongs to the class of polymers exhibiting excellence in electrical performances because of their intrinsic delocalized π- electrons and their tunability ranges from semi-conductive to metallic conductive regime. Conducting polymers and their composites serve greater functionality in the application of strain and pressure sensors, especially in yielding a better figure of merits, such as improved sensitivity, sensing range, durability, and mechanical robustness. The electrospinning process allows the formation of micro to nano-dimensional fibers with solution-processing attributes and offers an exciting aspect ratio by forming ultra-long fibrous structures. This review comprehensively covers the fundamentals of conducting polymers, sensor fabrication, working modes, and recent trends in achieving the sensitivity, wide-sensing range, reduced hysteresis, and durability of thin film, porous, and nanofibrous sensors. Furthermore, nanofiber and textile-based sensory device importance and its growth towards futuristic wearable electronics in a technological era was systematically reviewed to overcome the existing challenges.

Funder

Ministry of Science and Technology

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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