The present study investigates processing routes to obtain highly conductive and transparent electrodes of silver nanowires (AgNWs) on flexible polyethylene terephthalate (PET) substrate. The AgNWs are embedded into a UV-curable polymer to reduce the electrode roughness and enhance its stability. For the purpose of device integration, the AgNWs must partially protrude from the polymer, which demands that their embedding is followed by a transfer step from a host substrate to the final substrate. Since the AgNWs require some sort of curing (thermal or plasma) to reduce the electrode sheet resistance, a thermally stable host substrate is generally used. This study shows that both thermally stable polyimide, as well as temperature-sensitive PE...
The silver nanowire (Ag NW)-based electrode, a promising candidate for replacing the conventional in...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
The present study investigates processing routes to obtain highly conductive and transparent electro...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
The lithographic process for flexible transparent electrodes is essential for constructing wearable ...
AgNWs were produced by the one-pot polyol method, and it had been produced by reduction of AgNO3 by ...
AgNWs were produced by the one-pot polyol method, and it had been produced by reduction of AgNO3 by ...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
We propose a versatile yet practical transferring technique to fabricate a high performance and extr...
We propose a versatile yet practical transferring technique to fabricate a high performance and extr...
Silver nanowires (Ag NWs) with the length of ~60 μm and the diameter of ~300 nm are prepared via a s...
Silver nanowires (Ag NWs) with the length of ~60 μm and the diameter of ~300 nm are prepared via a s...
Silver nanowires (Ag NWs) with the length of ~60 μm and the diameter of ~300 nm are prepared via a s...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
The silver nanowire (Ag NW)-based electrode, a promising candidate for replacing the conventional in...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
The present study investigates processing routes to obtain highly conductive and transparent electro...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
The lithographic process for flexible transparent electrodes is essential for constructing wearable ...
AgNWs were produced by the one-pot polyol method, and it had been produced by reduction of AgNO3 by ...
AgNWs were produced by the one-pot polyol method, and it had been produced by reduction of AgNO3 by ...
Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent an...
We propose a versatile yet practical transferring technique to fabricate a high performance and extr...
We propose a versatile yet practical transferring technique to fabricate a high performance and extr...
Silver nanowires (Ag NWs) with the length of ~60 μm and the diameter of ~300 nm are prepared via a s...
Silver nanowires (Ag NWs) with the length of ~60 μm and the diameter of ~300 nm are prepared via a s...
Silver nanowires (Ag NWs) with the length of ~60 μm and the diameter of ~300 nm are prepared via a s...
Abstract Silver nanowires (AgNWs) with a low diameter, high aspect ratio, stable suspension, and eas...
The silver nanowire (Ag NW)-based electrode, a promising candidate for replacing the conventional in...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...