Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for their appropriate integration in many applications including transparent electrodes for optoelectronics and transparent film heaters. We have recently highlighted the discontinuous activation of efficient percolating pathways (EPPs) for networks having densities slightly above the percolation threshold. Such networks exhibit abrupt drops of electrical resistance when thermal or electrical annealing is performed, which gives rise to a “geometrically quantized percolation”. In this Letter, lock-in thermography (LiT) is used to provide visual evidence of geometrical quantized percolation: when low voltage is applied to the network, individual “i...
The use of transparent conductive materials (TCMs) has rapidly increased in the last two decades as ...
Metallic nanowire (NW) networks have attracted great attention as promising transparent conductive m...
International audienceSilver nanowire (AgNW) networks are efficient as flexible transparent electrod...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
Nano-structured networks have drawn attention as potential replacements for bulk-material approaches...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
The use of transparent conductive materials (TCMs) has rapidly increased in the last two decades as ...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
International audienceMetallic nanowire networks have huge potential in devices requiring transparen...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Silver nanowire (AgNW) networks have recently been the focus of intense research due to their pote...
During routine operation, electrically percolating nanocomposites are subjected to high voltages, le...
Great demand toward flexible optoelectronic devices finds metal nanowires (NWs) the most promising f...
The use of transparent conductive materials (TCMs) has rapidly increased in the last two decades as ...
Metallic nanowire (NW) networks have attracted great attention as promising transparent conductive m...
International audienceSilver nanowire (AgNW) networks are efficient as flexible transparent electrod...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
Nano-structured networks have drawn attention as potential replacements for bulk-material approaches...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
The use of transparent conductive materials (TCMs) has rapidly increased in the last two decades as ...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
International audienceMetallic nanowire networks have huge potential in devices requiring transparen...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Silver nanowire (AgNW) networks have recently been the focus of intense research due to their pote...
During routine operation, electrically percolating nanocomposites are subjected to high voltages, le...
Great demand toward flexible optoelectronic devices finds metal nanowires (NWs) the most promising f...
The use of transparent conductive materials (TCMs) has rapidly increased in the last two decades as ...
Metallic nanowire (NW) networks have attracted great attention as promising transparent conductive m...
International audienceSilver nanowire (AgNW) networks are efficient as flexible transparent electrod...