TY - JOUR
T1 - Hydrogel ionotronics
AU - Yang, Canhui
AU - Suo, Zhigang
N1 - Publisher Copyright:
© 2018 Macmillan Publishers Ltd., part of Springer Nature. All rights reserved.
PY - 2018/6/1
Y1 - 2018/6/1
N2 - An ionotronic device functions by a hybrid circuit of mobile ions and mobile electrons. Hydrogels are stretchable, transparent, ionic conductors that can transmit electrical signals of high frequency over long distance, enabling ionotronic devices such as artificial muscles, skins and axons. Moreover, ionotronic luminescent devices, ionotronic liquid crystal devices, touchpads, triboelectric generators, artificial eels and gel-elastomer-oil devices can be designed based on hydrogels. In this Review, we discuss first-generation hydrogel ionotronic devices and the challenges associated with the mechanical properties and the chemistry of the materials. We examine how strong and stretchable adhesion between hydrophilic and hydrophobic polymer networks can be achieved, how water can be retained in hydrogels and how to design hydrogels that resist fatigue under cyclic loads. Finally, we highlight applications of hydrogel ionotronic devices and discuss the future of the field.
AB - An ionotronic device functions by a hybrid circuit of mobile ions and mobile electrons. Hydrogels are stretchable, transparent, ionic conductors that can transmit electrical signals of high frequency over long distance, enabling ionotronic devices such as artificial muscles, skins and axons. Moreover, ionotronic luminescent devices, ionotronic liquid crystal devices, touchpads, triboelectric generators, artificial eels and gel-elastomer-oil devices can be designed based on hydrogels. In this Review, we discuss first-generation hydrogel ionotronic devices and the challenges associated with the mechanical properties and the chemistry of the materials. We examine how strong and stretchable adhesion between hydrophilic and hydrophobic polymer networks can be achieved, how water can be retained in hydrogels and how to design hydrogels that resist fatigue under cyclic loads. Finally, we highlight applications of hydrogel ionotronic devices and discuss the future of the field.
UR - https://www.scopus.com/pages/publications/85046885348
U2 - 10.1038/s41578-018-0018-7
DO - 10.1038/s41578-018-0018-7
M3 - 文献综述
AN - SCOPUS:85046885348
SN - 2058-8437
VL - 3
SP - 125
EP - 142
JO - Nature Reviews Materials
JF - Nature Reviews Materials
IS - 6
ER -