There is a growing interest in developing stretchable strain sensors to quantify the large mechanical deformation and strain associated with the activities for a wide range of species. Herein, we constructed elastomeric, healable hydrogen-bonded interpolymer complex (HIPC) rubberlike film by complexation of hydrogen-bond (H-bond)-donating poly(acrylic acid) (PAA) and H-bond-accepting poly(ethylene oxide) (PEO) (or poly(ethylene oxide)–poly(propylene oxide)–poly(ethylene oxide) (F108)). All HIPC elastomers prepared from varied PAA/PEO (or PAA/F108) ratios are healable elastomers with high extensibility (with the highest strain of 1400%). Recovery of all films can automatically occur or be accelerated by externally added water droplet. T...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
Hydrogel electronics have attracted growing interest for emerging applications in personal healthcar...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-<b>1</b>–<b>3<...
There is a growing interest in developing stretchable strain sensors to quantify the large mechanica...
Wearable strain sensors are essential for the realization of applications in the broad fields of rem...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-1–3) by conden...
It is challenging to develop healable elastomers with combined high mechanical strength and good ela...
A stretchable and self-healable conductive material with high conductivity is critical to high-perfo...
Polyelectrolyte complex hydrogel (PECH) is an emerging ion conductive hydrogel made from non-covalen...
Skin-like sensory devidces shoud be stretchable and self-healable to meet the demands for future ele...
Stretchable ionic skins are intriguing in mimicking the versatile sensations of natural skins. Howev...
Functions of extreme stretchability, ultrahigh tensile strength, high-level conductivity and self-he...
Stretchable and autonomously self-healable elastomers with wide-ranging tunable mechanical propertie...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
Hydrogel electronics have attracted growing interest for emerging applications in personal healthcar...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-<b>1</b>–<b>3<...
There is a growing interest in developing stretchable strain sensors to quantify the large mechanica...
Wearable strain sensors are essential for the realization of applications in the broad fields of rem...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-1–3) by conden...
It is challenging to develop healable elastomers with combined high mechanical strength and good ela...
A stretchable and self-healable conductive material with high conductivity is critical to high-perfo...
Polyelectrolyte complex hydrogel (PECH) is an emerging ion conductive hydrogel made from non-covalen...
Skin-like sensory devidces shoud be stretchable and self-healable to meet the demands for future ele...
Stretchable ionic skins are intriguing in mimicking the versatile sensations of natural skins. Howev...
Functions of extreme stretchability, ultrahigh tensile strength, high-level conductivity and self-he...
Stretchable and autonomously self-healable elastomers with wide-ranging tunable mechanical propertie...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
Hydrogel electronics have attracted growing interest for emerging applications in personal healthcar...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-<b>1</b>–<b>3<...