Stretchable electronics has attracted great interest with compelling potential applications that require reliable operation under mechanical deformation. Achieving stretchability in devices, however, requires a deeper understanding of nanoscale materials and mechanics beyond the success of flexible electronics. In this regard, tremendous research efforts have been dedicated toward developing stretchable electrodes, which are one of the most important building blocks for stretchable electronics. Stretchable transparent thin-film electrodes, which retain their electrical conductivity and optical transparency under mechanical deformation, are particularly important for the favourable application of stretchable devices. This minireview summariz...
Different nanostructures of metallic materials like one-dimensional nanowires, fractal nanoframework...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
The recent advent of unprecedented wearable applications engendered the need for stretchable electro...
Transparent electrodes with superior flexibility and stretchability as well as good electrical and o...
Advances in materials science and the desire for next-generation electronics have driven the develop...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
We report stretchable metal-mesh transparent electrodes (TEs) with excellent electrical conductivity...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
Transparent conductive electrodes (TCEs), which have transparency and conductivity, are of increasin...
Different nanostructures of metallic materials like one-dimensional nanowires, fractal nanoframework...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
The recent advent of unprecedented wearable applications engendered the need for stretchable electro...
Transparent electrodes with superior flexibility and stretchability as well as good electrical and o...
Advances in materials science and the desire for next-generation electronics have driven the develop...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
We report stretchable metal-mesh transparent electrodes (TEs) with excellent electrical conductivity...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
Transparent conductive electrodes (TCEs), which have transparency and conductivity, are of increasin...
Different nanostructures of metallic materials like one-dimensional nanowires, fractal nanoframework...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...
Transparent electrodes that can remain electrically conductive and stable under large mechanical def...