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Polydimethylsiloxane (PDMS)-Based Flexible Resistive Strain Sensors for Wearable Applications

Applied Sciences · 2018 · Vol. 8(3) · pp. 345–345
Jing ChenJiahong ZhengQinwu GaoJinjie ZhangJinyong ZhangOlatunji Mumini OmisoreLei WangHui Li

Abstract

There is growing attention and rapid development on flexible electronic devices with electronic materials and sensing technology innovations. In particular, strain sensors with high elasticity and stretchability are needed for several potential applications including human entertainment technology, human–machine interface, personal healthcare, and sports performance monitoring, etc. This article presents recent advancements in the development of polydimethylsiloxane (PDMS)-based flexible resistive strain sensors for wearable applications. First of all, the article shows that PDMS-based stretchable resistive strain sensors are successfully fabricated by different methods, such as the filtration method, printing technology, micromolding method, coating techniques, and liquid phase mixing. Next, strain sensing performances including stretchability, gauge factor, linearity, and durability are comprehensively demonstrated and compared. Finally, potential applications of PDMS-based flexible resistive strain sensors are also discussed. This review indicates that the era of wearable intelligent electronic systems has arrived.

Advanced Sensor and Energy Harvesting MaterialsTactile and Sensory InteractionsConducting polymers and applicationsPolydimethylsiloxaneResistive touchscreenMaterials scienceGauge factorWearable computerStrain gaugeWearable technologyInkwellNanotechnologyCapacitive sensing

Funding

  • National Natural Science Foundation of China
  • Chinese Academy of Sciences
  • Shenzhen Institutes of Advanced Technology Innovation Program for Excellent Young Researchers
Citations
308
FWCI
8.99
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References
85
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99%
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