Silver nanowire networks emerged recently as a remarkable substitute for indium tin oxide (ITO) trans-parent electrodes. Here we show that this silver nanowire alternative can be successfully processed using the same laser ablation technique commonly used to manufacture ITO devices. As a proof of concept, we have manufactured a fully operating five inch multi-touch highly-pixelated sensor typically used in smartphone technology and find it to perform comparably to one based on ITO. We observe that laser processing silver nanowire films is much more efficient from an energy point of view, with scribes hardly visible to the naked eye. We find that the sheet resistance (RS) of the nanowire films increases as a result of dividing it into finite...
Large surface roughness, wire-to-wire junction resistance, and poor adhesion strength of percolated ...
Metal nanowire networks are a promising concept for replacing ITO in transparent electrodes for a ra...
Network structures of metal nanowires are a promising candidate for producing a wide range of flexib...
Silver nanowire networks emerged recently as a remarkable substitute for indium tin oxide (ITO) tran...
Silver nanowire (AgNW) films have been shown to have transparent and conductive properties suitable ...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
International audienceTransparent flexible electrodes made of metallic nanowires, and in particular ...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
We report about the production of transparent electrodes based on silver nanowires and on hybrid fil...
International audienceThe past few years have seen a considerable amount of research devoted to nano...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
We report the first application of finite-size scaling theory to nanostructured percolating networks...
Ag nanowire (NW) networks have exquisite optical and electrical properties which make them ideal can...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
Large surface roughness, wire-to-wire junction resistance, and poor adhesion strength of percolated ...
Metal nanowire networks are a promising concept for replacing ITO in transparent electrodes for a ra...
Network structures of metal nanowires are a promising candidate for producing a wide range of flexib...
Silver nanowire networks emerged recently as a remarkable substitute for indium tin oxide (ITO) tran...
Silver nanowire (AgNW) films have been shown to have transparent and conductive properties suitable ...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
International audienceTransparent flexible electrodes made of metallic nanowires, and in particular ...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
We report about the production of transparent electrodes based on silver nanowires and on hybrid fil...
International audienceThe past few years have seen a considerable amount of research devoted to nano...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
We report the first application of finite-size scaling theory to nanostructured percolating networks...
Ag nanowire (NW) networks have exquisite optical and electrical properties which make them ideal can...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
Large surface roughness, wire-to-wire junction resistance, and poor adhesion strength of percolated ...
Metal nanowire networks are a promising concept for replacing ITO in transparent electrodes for a ra...
Network structures of metal nanowires are a promising candidate for producing a wide range of flexib...