International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flexible transparent electrodes for energy, lighting and heating devices. However, the lack of stability of such networks is a key factor that limits their industrial application. While applications require homogeneous networks, non-homogeneous AgNW networks are intentionally prepared in the present work to probe the mechanisms leading to failure under electrical stress. We show that induced non-homogeneities have a strong impact both on the spatial distribution of temperature (measured by IR imaging) and the current density throughout the electrode (as deduced from modeling). Regions with higher current density under elevated electrical stress a...
Transparent conducting materials (TCM) play a pivotal role in many modern devices. However, the most...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Silver nanowire transparent electrodes have shown considerable potential to replace conventional tra...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
International audienceSilver nanowire (AgNW) networks have been intensively investigated in recent y...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium tin...
Thermal, electrical, and chemical instabilities affect the efficient integration of silver nanowire ...
Silver nanowire (AgNW) networks offer excellent electrical and optical properties and have emerged a...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium ti...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
International audienceFlexible transparent electrodes fabricated with random networks of silver nano...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Transparent conducting materials (TCM) play a pivotal role in many modern devices. However, the most...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Silver nanowire transparent electrodes have shown considerable potential to replace conventional tra...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
International audienceSilver nanowire (AgNW) networks have been intensively investigated in recent y...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium tin...
Thermal, electrical, and chemical instabilities affect the efficient integration of silver nanowire ...
Silver nanowire (AgNW) networks offer excellent electrical and optical properties and have emerged a...
Silver nanowires are one of the prominent candidates for the replacement of the incumbent indium ti...
Advancement in the science and technology of random metallic nanowire (MNW) networks is crucial for ...
International audienceFlexible transparent electrodes fabricated with random networks of silver nano...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Transparent conducting materials (TCM) play a pivotal role in many modern devices. However, the most...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Silver nanowire transparent electrodes have shown considerable potential to replace conventional tra...