Transparent microelectrodes with high bendability are necessary to develop lightweight, small electronic devices that are highly portable. Here, we report a reliable fabrication method for transparent and highly bendable microelectrodes based on conductive silver nanowires (AgNWs) and 2,2,6,6-tetramethylpiperidine-1-oxy (TEMPO)-oxidized cellulose nanofibers (CNFs). The AgNW-based micropatterns were simply fabricated on glass via poly(ethylene glycol) photolithography and then completely transferred to transparent TEMPO-CNF nanopaper with high bendability via vacuum-assisted microcontact printing (μCP). The AgNW micropatterns were embedded in the surface layer of TEMPO-CNF nanopaper, enabling strong adhesion to the nanopaper substrate. The ...
Despite their high optical transparency and electrical conductivity, the commercialization of silver...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
Recently, flexible transparent conductive films have received widespread attention as important comp...
Huge challenges remain regarding the facile fabrication of neat metallic nanowires mesh for high-qua...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
Foldable electronics, with the advantages of size compactness and shape transformation, are promisin...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
We introduce a new concept for transparent electrodes via the self-assembly of a silver nanowire (Ag...
We propose a fabrication process for extremely robust and easily patternable silver nanowire (AgNW) ...
Hydrogel-based flexible microelectrodes have garnered considerable attention recently for soft bioel...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Hydrogel-based flexible microelectrodes have garnered considerable attention recently for soft bioel...
Metal nanowire networks are a promising concept for replacing ITO in transparent electrodes for a ra...
We propose a versatile yet practical transferring technique to fabricate a high performance and extr...
Despite their high optical transparency and electrical conductivity, the commercialization of silver...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
Recently, flexible transparent conductive films have received widespread attention as important comp...
Huge challenges remain regarding the facile fabrication of neat metallic nanowires mesh for high-qua...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
Foldable electronics, with the advantages of size compactness and shape transformation, are promisin...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
We introduce a new concept for transparent electrodes via the self-assembly of a silver nanowire (Ag...
We propose a fabrication process for extremely robust and easily patternable silver nanowire (AgNW) ...
Hydrogel-based flexible microelectrodes have garnered considerable attention recently for soft bioel...
Mechanically ultra-robust, transparent and flexible electrodes assembled from silver nanowires (Ag N...
Hydrogel-based flexible microelectrodes have garnered considerable attention recently for soft bioel...
Metal nanowire networks are a promising concept for replacing ITO in transparent electrodes for a ra...
We propose a versatile yet practical transferring technique to fabricate a high performance and extr...
Despite their high optical transparency and electrical conductivity, the commercialization of silver...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...