A Flexible and Multipurpose Piezoresistive Strain Sensor Based on Carbonized Phenol Formaldehyde Foam for Human Motion Monitoring
Lei Wang(Chinese Academy of Sciences), Ping Wang(Southwest Petroleum University), Dong Xiang(Southwest Petroleum University), Yuntao Li(Vernon College), Chunxia Zhao(Southwest Petroleum University), Xuezhong Zhang(Wenzhou Medical University), Yongfeng Zheng(Guangzhou University), Eileen Harkin‐Jones(University of Ulster)
Cited by 18
Related Papers
Enhanced performance of 3D printed highly elastic strain sensors of carbon nanotube/thermoplastic polyurethane nanocomposites via non-covalent interactions
|Composites Part B Engineering|2019|260
Synergistic effect of ammonium polyphosphate and layered double hydroxide on flame retardant properties of poly(vinyl alcohol)
|Polymer Degradation and Stability|2008|250
Flexible and high-performance piezoresistive strain sensors based on carbon nanoparticles@polyurethane sponges
|Composites Science and Technology|2020|190
Synergistic effects of hybrid conductive nanofillers on the performance of 3D printed highly elastic strain sensors
|Composites Part A Applied Science and Manufacturing|2019|158
High-performance flexible strain sensors based on biaxially stretched conductive polymer composites with carbon nanotubes immobilized on reduced graphene oxide
|Composites Part A Applied Science and Manufacturing|2021|132