International audienceFlexible transparent electrodes fabricated with random networks of silver nanowires (AgNWs) have beenwidely studied in recent years. This approach appears to be a promising alternative to replace ITO (indium tin oxide) in many optoelectronic applications. Many successful integrations in functional devices have already evidenced the high potential of this technology, but unfortunately only very few studies have been dedicated so far to the stability of this material. We present here a study dealing with the alteration of the electrical properties of AgNW meshes when subjected to different stresses. We demonstrate that AgNW electrodes are very stable when stored under ambient atmosphere up to, at least, two and a half ye...
From PubMed via Jisc Publications RouterPublication status: aheadofprintA report of transparent and ...
Silver nanowire (AgNW) transparent electrodes show promise as an alternative to indium tin oxide (IT...
In this work, ITO/silver nanowire (AgNW)/ITO (IAWI) and IZO/AgNW/IZO (ZAWZ) hybrid electrodes were p...
International audienceFlexible transparent electrodes fabricated with random networks of silver nano...
Silver nanowire (AgNW) networks have been intensively investigated in recent years. Thanks to their ...
Silver nanowire (AgNW) networks offer excellent electrical and optical properties and have emerged a...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
Thermal, electrical, and chemical instabilities affect the efficient integration of silver nanowire ...
Owing to their high conductivity, transparency, flexibility, and compatibility with solution process...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Transparent electrodes consisting of silver nanowires (Ag NWs) are a solution-processed alternative ...
The report of transparent and conducting silver nanowires (AgNWs) that produce remarkable electrical...
From PubMed via Jisc Publications RouterPublication status: aheadofprintA report of transparent and ...
Silver nanowire (AgNW) transparent electrodes show promise as an alternative to indium tin oxide (IT...
In this work, ITO/silver nanowire (AgNW)/ITO (IAWI) and IZO/AgNW/IZO (ZAWZ) hybrid electrodes were p...
International audienceFlexible transparent electrodes fabricated with random networks of silver nano...
Silver nanowire (AgNW) networks have been intensively investigated in recent years. Thanks to their ...
Silver nanowire (AgNW) networks offer excellent electrical and optical properties and have emerged a...
International audienceTransparent electrodes (TE) are essential components in a huge variety of emer...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
Thermal, electrical, and chemical instabilities affect the efficient integration of silver nanowire ...
Owing to their high conductivity, transparency, flexibility, and compatibility with solution process...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Transparent electrodes consisting of silver nanowires (Ag NWs) are a solution-processed alternative ...
The report of transparent and conducting silver nanowires (AgNWs) that produce remarkable electrical...
From PubMed via Jisc Publications RouterPublication status: aheadofprintA report of transparent and ...
Silver nanowire (AgNW) transparent electrodes show promise as an alternative to indium tin oxide (IT...
In this work, ITO/silver nanowire (AgNW)/ITO (IAWI) and IZO/AgNW/IZO (ZAWZ) hybrid electrodes were p...