Recently developed optically transparent microelectrode technology provides a promising approach for simultaneous high-resolution electrical and optical biointerfacing with tissues in vivo and in vitro. A critically unmet need is designing high-performance stretchable platforms for conformal biointerfacing with mechanically active organs. Here, we report silver nanowire (Ag NW) stretchable transparent microelectrodes and interconnects that exhibit excellent electrical and electrochemical performance, high optical transparency, superior mechanical robustness and durability by a simple selective-patterning process. The fabrication method allows the direct integration of Ag NW networks on elastomeric substrates. The resulting Ag NW interface e...
Many studies have accompanied the emergence of a great interest in flexible or/and stretchable devic...
We introduce a photolithography process compatible with soft and rigid substrates, enabling the fabr...
Mechanical robustness, electrical and chemical reliabilities of devices against large deformations s...
We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Abstract To achieve adhesive and conformable wearable electronics, improving stretchable transparent...
We report on a new surface modifier which simultaneously improves electrical, optical, and mechanica...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
The recent advent of unprecedented wearable applications engendered the need for stretchable electro...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
Stretchable and transparent electrodes are fabricated by chemical deposition of metal thin films on ...
Conductive metal films are patterned into transparent metal nanowire networks by using electrospun f...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
This paper demonstrates a facile methodology for fusing silver nanowires (AgNWs) at the nanoscale us...
Many studies have accompanied the emergence of a great interest in flexible or/and stretchable devic...
We introduce a photolithography process compatible with soft and rigid substrates, enabling the fabr...
Mechanical robustness, electrical and chemical reliabilities of devices against large deformations s...
We develop highly robust and stretchable conductive transparent electrodes based on silver nanowires...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Abstract To achieve adhesive and conformable wearable electronics, improving stretchable transparent...
We report on a new surface modifier which simultaneously improves electrical, optical, and mechanica...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
The recent advent of unprecedented wearable applications engendered the need for stretchable electro...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
Stretchable and transparent electrodes are fabricated by chemical deposition of metal thin films on ...
Conductive metal films are patterned into transparent metal nanowire networks by using electrospun f...
Transparent electrodes based on conventional indium–tin oxide (ITO) can hardly meet the requirements...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
This paper demonstrates a facile methodology for fusing silver nanowires (AgNWs) at the nanoscale us...
Many studies have accompanied the emergence of a great interest in flexible or/and stretchable devic...
We introduce a photolithography process compatible with soft and rigid substrates, enabling the fabr...
Mechanical robustness, electrical and chemical reliabilities of devices against large deformations s...