TY - JOUR
T1 - High precision patternable liquid metal based conductor and adhesive substrate enabled stretchable hybrid systems
AU - Zhou, Runhui
AU - Huang, Jiaoya
AU - Li, Zemin
AU - Wang, Yushu
AU - Chen, Ziyu
AU - Pan, Caofeng
N1 - Publisher Copyright:
© Tsinghua University Press 2024.
PY - 2024/6
Y1 - 2024/6
N2 - Stretchable hybrid systems have been attracting tremendous attention for their essential role in soft robotics, on-skin electronics, and implantable devices. Both rigid and soft functional modules are typically required in those devices. Consequently, ensuring stable electrical contact between rigid and soft modules is a vital part. Here, we propose a simple, universal, and scalable strategy for the stretchable hybrid system through a highly precise printable liquid metal particle-based conductor and adhesive fluorine rubber substrate. The properties of liquid metal particle-based conductors could be easily tuned to realize high-precision patterning, large-scale printing, and the ability to print on various substrates. Additionally, the fluorine rubber substrate could form strong interfacial adhesion with various components and materials through simply pressing and heating, hence enabling stable electrical contact. Furthermore, we prepared a stretchable hybrid light-emitting diode (LED) display system and employed it in on-skin visualization of pressure levels, which perfectly combined rigid and soft modules, thus demonstrating the promising potential applications in complex multifunctional stretchable hybrid systems for emerging technologies.
AB - Stretchable hybrid systems have been attracting tremendous attention for their essential role in soft robotics, on-skin electronics, and implantable devices. Both rigid and soft functional modules are typically required in those devices. Consequently, ensuring stable electrical contact between rigid and soft modules is a vital part. Here, we propose a simple, universal, and scalable strategy for the stretchable hybrid system through a highly precise printable liquid metal particle-based conductor and adhesive fluorine rubber substrate. The properties of liquid metal particle-based conductors could be easily tuned to realize high-precision patterning, large-scale printing, and the ability to print on various substrates. Additionally, the fluorine rubber substrate could form strong interfacial adhesion with various components and materials through simply pressing and heating, hence enabling stable electrical contact. Furthermore, we prepared a stretchable hybrid light-emitting diode (LED) display system and employed it in on-skin visualization of pressure levels, which perfectly combined rigid and soft modules, thus demonstrating the promising potential applications in complex multifunctional stretchable hybrid systems for emerging technologies.
KW - high precision
KW - interfacial adhesion
KW - liquid metal
KW - stretchable hybrid systems
UR - https://www.scopus.com/pages/publications/85189334263
U2 - 10.1007/s12274-024-6516-6
DO - 10.1007/s12274-024-6516-6
M3 - 文章
AN - SCOPUS:85189334263
SN - 1998-0124
VL - 17
SP - 5595
EP - 5603
JO - Nano Research
JF - Nano Research
IS - 6
ER -