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Development of Conductive Hydrogels for Fabricating Flexible Strain Sensors

Gang Li, Gang Li, Chenglong Li, Guodong Li, Guodong Li, Dehai Yu, Zhaoping Song, Huili Wang, Xiaona Liu, Hong Liu, Wenxia Liu

2021Small493 citationsDOI

Abstract

Conductive hydrogels can be prepared by incorporating various conductive materials into polymeric network hydrogels. In recent years, conductive hydrogels have been developed and applied in the field of strain sensors owing to their unique properties, such as electrical conductivity, mechanical properties, self-healing, and anti-freezing properties. These remarkable properties allow conductive hydrogel-based strain sensors to show excellent performance for identifying external stimuli and detecting human body movement, even at subzero temperatures. This review summarizes the properties of conductive hydrogels and their application in the fabrication of strain sensors working in different modes. Finally, a brief prospectus for the development of conductive hydrogels in the future is provided.

Topics & Concepts

Self-healing hydrogelsMaterials scienceElectrical conductorStrain (injury)NanotechnologyConductive polymerComposite materialPolymer chemistryPolymerMedicineInternal medicineAdvanced Sensor and Energy Harvesting MaterialsAdvanced Materials and MechanicsConducting polymers and applications