TY - JOUR
T1 - Self-powered wearable sensing devices based on a flexible ammonium-ion battery with fatigue resistance and frost resistance based on a strong and tough hydrogel
AU - Yang, Jia
AU - Zhang, Bin
AU - Tian, Xiyu
AU - Liu, Shuzheng
AU - Xu, Zhichao
AU - Sun, Gengzhi
AU - Qin, Gang
AU - Chen, Qiang
N1 - Publisher Copyright:
© 2022 The Royal Society of Chemistry.
PY - 2022/11/11
Y1 - 2022/11/11
N2 - As a new type of flexible electronics, without an external power supply, wearable self-powered sensing devices have attracted more and more attention. However, poor flexibility, anti-fatigue and anti-freezing properties limit their applications. Hence, we synthesized a physically crosslinked poly(N-hydroxyethyl acrylamide)/ammonium sulfate/glycerol (PHEA/AS/Gly) ionic conductive hydrogel by means of photoinitiation and soaking, and the synthesized hydrogel exhibited high strength and toughness, good ionic conductivity, quick self-recovery, as well as excellent mechanical and sensing properties of fatigue and frost resistance. Based on the PHEA/AS/Gly hydrogel, a novel flexible ammonium-ion battery and a flexible sensor were designed and prepared to assemble self-powered wearable sensing devices, which exhibited highly sensitive, ambient-stable, long-term fatigue-resistant and frozen-resistant electrochemical/sensing performances, as well as deformation-insensitive electrochemical properties, and could detect different human movements sensitively and stably without an external power supply at room and low temperatures or after long-term storage. Therefore, this work will provide a simple strategy to fabricate a self-powered flexible sensing system with integrated high performances for wearable smart electronics.
AB - As a new type of flexible electronics, without an external power supply, wearable self-powered sensing devices have attracted more and more attention. However, poor flexibility, anti-fatigue and anti-freezing properties limit their applications. Hence, we synthesized a physically crosslinked poly(N-hydroxyethyl acrylamide)/ammonium sulfate/glycerol (PHEA/AS/Gly) ionic conductive hydrogel by means of photoinitiation and soaking, and the synthesized hydrogel exhibited high strength and toughness, good ionic conductivity, quick self-recovery, as well as excellent mechanical and sensing properties of fatigue and frost resistance. Based on the PHEA/AS/Gly hydrogel, a novel flexible ammonium-ion battery and a flexible sensor were designed and prepared to assemble self-powered wearable sensing devices, which exhibited highly sensitive, ambient-stable, long-term fatigue-resistant and frozen-resistant electrochemical/sensing performances, as well as deformation-insensitive electrochemical properties, and could detect different human movements sensitively and stably without an external power supply at room and low temperatures or after long-term storage. Therefore, this work will provide a simple strategy to fabricate a self-powered flexible sensing system with integrated high performances for wearable smart electronics.
UR - http://www.scopus.com/inward/record.url?scp=85142908190&partnerID=8YFLogxK
U2 - 10.1039/d2tc04455b
DO - 10.1039/d2tc04455b
M3 - 文章
AN - SCOPUS:85142908190
SN - 2050-7526
VL - 10
SP - 17675
EP - 17683
JO - Journal of Materials Chemistry C
JF - Journal of Materials Chemistry C
IS - 46
ER -