We study the stability of flexible transparent electrodes (FTEs) that were self-assembled from ultra-thin gold nanowires (AuNW) by direct nanoimprinting of inks with different particle concentrations (1 to 10 mg mL−1). The resulting lines were less than 3 μm wide and contained bundles of AuNW with oleylamine (OAm) ligand shells. Small-angle X-ray scattering confirmed a concentration-independent bundle structure. Plasma sintering converted the wire assemblies into lines with a thin metal shell that contributes most to electrical conductivity and covers a hybrid core. We studied the relative change in sheet resistance and the morphology of the FTEs with time. The sheet resistance increased at all concentrations, but at different rates. The me...
Ag nanowire transparent electrode has excellent transmittance and sheet resistance, yet its optical ...
Stretchable transparent electrodes are key elements in flexible electronics and e-skins. However, ex...
International audienceTransparent electrodes attract intense attention in many technological fields,...
We directed the self-assembly of nanoscale colloids via direct nanoimprint lithography to create fle...
We fabricated flexible, transparent, and conductive metal grids as transparent conductive materials ...
We fabricated flexible, transparent, and conductive metal grids as transparent conductive materials ...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
We directed the self-assembly of nanoscale colloids via direct nanoimprint lithography to create fle...
International audienceFlexible transparent electrodes fabricated with random networks of silver nano...
Abstract The transmittance, conductivity, and flexibility are the crucial properties for the develop...
Ultrathin gold nanowires (AuNWs) with diameters below 2 nm and high aspect ratios are considered to ...
AbstractNovel types of Transparent Conductive Materials (TCMs) based on metal nanostructures are dis...
Transparent electrodes (TEs) made of metallic nanowires, such as Ag, Au, Cu, and Ni, are attracting ...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
Ag nanowire transparent electrode has excellent transmittance and sheet resistance, yet its optical ...
Stretchable transparent electrodes are key elements in flexible electronics and e-skins. However, ex...
International audienceTransparent electrodes attract intense attention in many technological fields,...
We directed the self-assembly of nanoscale colloids via direct nanoimprint lithography to create fle...
We fabricated flexible, transparent, and conductive metal grids as transparent conductive materials ...
We fabricated flexible, transparent, and conductive metal grids as transparent conductive materials ...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
We directed the self-assembly of nanoscale colloids via direct nanoimprint lithography to create fle...
International audienceFlexible transparent electrodes fabricated with random networks of silver nano...
Abstract The transmittance, conductivity, and flexibility are the crucial properties for the develop...
Ultrathin gold nanowires (AuNWs) with diameters below 2 nm and high aspect ratios are considered to ...
AbstractNovel types of Transparent Conductive Materials (TCMs) based on metal nanostructures are dis...
Transparent electrodes (TEs) made of metallic nanowires, such as Ag, Au, Cu, and Ni, are attracting ...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
Ag nanowire transparent electrode has excellent transmittance and sheet resistance, yet its optical ...
Stretchable transparent electrodes are key elements in flexible electronics and e-skins. However, ex...
International audienceTransparent electrodes attract intense attention in many technological fields,...