Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-<b>1</b>–<b>3</b>) by condensation polymerization, consisting of (i) soft polymeric chains (polytetramethylene glycol and tetraethylene glycol) and (ii) strong and reversible quadruple H-bonding cross-linkers (from 0 to 30 mol %). The former contributes to the formation of the soft domain of the SPMs, and the latter furnishes the SPMs with desirable mechanical properties, thereby producing soft, stretchable, yet tough elastomers. The resulting SPM-<b>2</b> was observed to be highly stretchable (up to 17 000% strain), tough (fracture energy ∼30 000 J/m<sup>2</sup>), and self-healing, which are highly desirable properties and are superior to previously repor...
Stretchable electronics technologies have gained a lot of interest for reasons such as user comfort ...
Although recent years have witnessed intense efforts and innovations in the design of flexible condu...
Functions of extreme stretchability, ultrahigh tensile strength, high-level conductivity and self-he...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-<b>1</b>–<b>3<...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-1–3) by conden...
Polymeric elastomers integrated with high mechanical toughness and excellent self-healing ability ca...
Stretchable and autonomously self-healable elastomers with wide-ranging tunable mechanical propertie...
There is a growing interest in developing stretchable strain sensors to quantify the large mechanica...
Wearable and flexible electronics attract a lot of attention in the scientific community since these...
Next-generation wearable electronics are expected to endure significant deformations and mechanical ...
Keywords: Polymer, Self-Healing, Room temperature, Flexible, Electronics Self-healing materials have...
Stretchable electronics technologies have gained a lot of interest for reasons such as user comfort ...
Although recent years have witnessed intense efforts and innovations in the design of flexible condu...
Functions of extreme stretchability, ultrahigh tensile strength, high-level conductivity and self-he...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-<b>1</b>–<b>3<...
Herein, we report a de novo chemical design of supramolecular polymer materials (SPMs-1–3) by conden...
Polymeric elastomers integrated with high mechanical toughness and excellent self-healing ability ca...
Stretchable and autonomously self-healable elastomers with wide-ranging tunable mechanical propertie...
There is a growing interest in developing stretchable strain sensors to quantify the large mechanica...
Wearable and flexible electronics attract a lot of attention in the scientific community since these...
Next-generation wearable electronics are expected to endure significant deformations and mechanical ...
Keywords: Polymer, Self-Healing, Room temperature, Flexible, Electronics Self-healing materials have...
Stretchable electronics technologies have gained a lot of interest for reasons such as user comfort ...
Although recent years have witnessed intense efforts and innovations in the design of flexible condu...
Functions of extreme stretchability, ultrahigh tensile strength, high-level conductivity and self-he...