We introduce a photolithography process compatible with soft and rigid substrates, enabling the fabrication of complex 3D interconnected patterns of silver nanowire (AgNW) networks embedded in polydimethylsiloxane (PDMS). Dimensions of the AgNW micropatterns are controlled within the film plane by photolithography, whereas thickness is controlled via a novel and uniform deposition technique using centrifugation. We report the first systematic characterization of the electromechanical properties of such microelectrodes with finest stretchable feature of 15 μm. We observe a geometry-dependent behavior of the gauge factor not only by changing the thickness of the microelectrodes, as it has been commonly reported so far, but also by varying the...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Stretchable, skin-interfaced, and wearable strain sensors have risen in recent years due to their wi...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
Highly flexible and conductive nano-composite materials are promising candidates for stretchable and...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...
Foldable photoelectronics and muscle-like transducers require highly stretchable and trans-parent el...
One-dimensional nanomaterials have drawn attention as an alternative electrode material for stretcha...
The silver nanowire (Ag NW)/elastomer nanocomposite represents a prototypical form of a compliant co...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
Silver nanowires (AgNWs) have become an efficient electrode candidate for stretchable electronics. W...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
We report the fabrication of stretchable transparent electrode films (STEF) using 15-nm-diameter Ag ...
The demand for flexible and wearable electronic devices is increasing due to their facile interactio...
The demand for flexible and wearable electronic devices is increasing due to their facile interactio...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Stretchable, skin-interfaced, and wearable strain sensors have risen in recent years due to their wi...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
Highly flexible and conductive nano-composite materials are promising candidates for stretchable and...
One of the most important aspects that we need to consider in the design of intrinsically stretchabl...
Foldable photoelectronics and muscle-like transducers require highly stretchable and trans-parent el...
One-dimensional nanomaterials have drawn attention as an alternative electrode material for stretcha...
The silver nanowire (Ag NW)/elastomer nanocomposite represents a prototypical form of a compliant co...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
Silver nanowires (AgNWs) have become an efficient electrode candidate for stretchable electronics. W...
Transparent conductors for the next generation of soft electronic devices need to be highly stretcha...
We report the fabrication of stretchable transparent electrode films (STEF) using 15-nm-diameter Ag ...
The demand for flexible and wearable electronic devices is increasing due to their facile interactio...
The demand for flexible and wearable electronic devices is increasing due to their facile interactio...
Silver nanowires (AgNWs) have emerged as a promising nanomaterial for next generation stretchable el...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Stretchable, skin-interfaced, and wearable strain sensors have risen in recent years due to their wi...