Novel silk hydrogel-based material for wearable energy harvesting and sensing mountaineers’ activities
Author:
Affiliation:
1. Free University of Bolzano,Faculty of Science & Technology,Bolzano,Italy
2. Center for Sensing Solutions EURAC Research,Bolzano,Italy
3. Advanced Technology Institute University of Surrey,Guildford,UK
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10180122/10180015/10180192.pdf?arnumber=10180192
Reference31 articles.
1. Energy Consumption Model for Sensor Nodes Based on LoRa and LoRaWAN;bouguera;SENSORS,2018
2. Wearable respiratory strain monitoring system based on textile-based capacitive strain sensor;jun;Journal of Physics Conference Series,2020
3. Sweat-based wearable energy harvesting-storage hybrid textile devices
4. A Self-Powered Strain Sensor Applied to Real-Time Monitoring for Movable Structures
5. Universal power management strategy for triboelectric nanogenerator
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