Self-healable and stretchable thermoelectric (TE) materials provide new possibilities for self-powered flexible wearable devices to self-repair mechanical damage. However, developing high-performance materials with such desirable TE and mechanical properties is a significant challenge. In this work, organic-inorganic ionic TE composites (OITCs) with an unprecedently high ionic TE figure of merit (ZT(i) = 3.74 at 80% relative humidity) and robust properties of simultaneous self-healing and stretching are reported. The OITCs are developed by incorporating inorganic SiO2 nanoparticles (SiO2-nps) in a polyaniline: poly(2-acrylamido-2-methyl-1-propanesulfonic acid): phytic acid (PANI:PAAMPSA:PA) ternary polymer. The incorporated SiO2-nps constru...
In the past few decades, organic thermoelectric materials/devices, which can exhibit remarkable pote...
Wearable strain sensors are essential for the realization of applications in the broad fields of rem...
Among smart materials, self-healing is one of the most studied properties. A self-healing polymer ca...
While the thermoelectric (TE) generator has attracted tremendous attention, the development of weara...
The advancement of wearable electronics, particularly self-powered wearable electronic devices, nece...
Thermoelectric (TE) generators that are capable of providing sustainable energy conversion under dyn...
With the ever-growing development of multifunctional and miniature electronics, the exploring of hig...
The rapid growth of wearables has created a demand for lightweight, elastic and conformal energy har...
Wearable electronics, as a new form of ubiquitous technology, require a sustainable self-powering sy...
Next-generation wearable electronics are expected to endure significant deformations and mechanical ...
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...
A stretchable and self-healable conductive material with high conductivity is critical to high-perfo...
Nature provides us with amazingly complex and clever systems, structures and substances that make up...
In spite of the fact that conducting polymers, during the past decade, have made inroads into variou...
In the past few decades, organic thermoelectric materials/devices, which can exhibit remarkable pote...
Wearable strain sensors are essential for the realization of applications in the broad fields of rem...
Among smart materials, self-healing is one of the most studied properties. A self-healing polymer ca...
While the thermoelectric (TE) generator has attracted tremendous attention, the development of weara...
The advancement of wearable electronics, particularly self-powered wearable electronic devices, nece...
Thermoelectric (TE) generators that are capable of providing sustainable energy conversion under dyn...
With the ever-growing development of multifunctional and miniature electronics, the exploring of hig...
The rapid growth of wearables has created a demand for lightweight, elastic and conformal energy har...
Wearable electronics, as a new form of ubiquitous technology, require a sustainable self-powering sy...
Next-generation wearable electronics are expected to endure significant deformations and mechanical ...
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...
A stretchable and self-healable conductive material with high conductivity is critical to high-perfo...
Nature provides us with amazingly complex and clever systems, structures and substances that make up...
In spite of the fact that conducting polymers, during the past decade, have made inroads into variou...
In the past few decades, organic thermoelectric materials/devices, which can exhibit remarkable pote...
Wearable strain sensors are essential for the realization of applications in the broad fields of rem...
Among smart materials, self-healing is one of the most studied properties. A self-healing polymer ca...