Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for increasing their robustness and reliability when integrated as transparent electrodes in devices. Our ability to distinguish defects, inhomogeneities, or inactive areas at the scale of the entire network is therefore a critical issue. We propose one-probe electrical mapping (1P-mapping) as a specific simple tool to study the electrical distribution in these discrete structures. 1P-mapping has allowed us to show that the tortuosity of the voltage equipotential lines of AgNW networks under bias decreases with increasing network density, leading to a better electrical homogeneity. The impact of the network fabrication technique on the electrical hom...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium tin...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
Silver nanowire (AgNW) networks show excellent optical, electrical, and mechanical properties, which...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
PDF of ACS Nano 2021, 15, 362−376 10.1021/acsnano.0c06480 ABSTRACT: Silver nanowire (AgNW) networks...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Metallic nanowire (NW) networks have attracted great attention as promising transparent conductive m...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Networks of silver nanowires appear set to replace expensive indium tin oxide as the transparent con...
Thermal, electrical, and chemical instabilities affect the efficient integration of silver nanowire ...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium tin...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
Silver nanowire (AgNW) networks show excellent optical, electrical, and mechanical properties, which...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
PDF of ACS Nano 2021, 15, 362−376 10.1021/acsnano.0c06480 ABSTRACT: Silver nanowire (AgNW) networks...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Metallic nanowire (NW) networks have attracted great attention as promising transparent conductive m...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Networks of silver nanowires appear set to replace expensive indium tin oxide as the transparent con...
Thermal, electrical, and chemical instabilities affect the efficient integration of silver nanowire ...
The most efficient and widely used transparent conducting material (TCM) is currently indium tin oxi...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium tin...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...