A self-powered sensor for detecting slip state and pressure of underwater actuators based on triboelectric nanogenerator

Author:

Shan Baichuan,Liu ChangxinORCID,Chen Runhe,Qu Guanghao,Sui Hao,Chen Nanxi,Xing Guangyi

Publisher

Elsevier BV

Subject

Materials Chemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

Reference40 articles.

1. Design of a flexible tactile sensor for classification of rigid and deformable objects [J];Drimus;Robot. Autonom. Syst.,2014

2. Flexible conductivity-temperature-depth-strain (CTDS) sensor based on a CNT/PDMS bottom electrode for underwater sensing [J];He;Flexible and Printed Electronics,2022

3. Microgeometry capture using an elastomeric sensor [J];Johnson;ACM Trans. Graph.,2011

4. Subtle vibration sensing and dimension measurement with a bio-inspired optical tactile sensor;Zhu,2019

5. A material recognition method for underwater application based on Micro Thermoelectric Generator [J];Liu;Sensor Actuator Phys.,2022

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