We report an Ag nanofiber-embedded glass-fabric reinforced hybrimer (AgNF-GFRHybrimer) composite film as a reliable and high-performance flexible transparent conducting film. The continuous AgNF network provides superior optoelectronic properties of the composite film by minimizing transmission loss and junction resistance. In addition, the excellent thermal/chemical stability and mechanical durability of the GFRHybrimer matrix provides enhanced mechanical durability and reliability of the final AgNF-GFRHybrimer composite film. To demonstrate the availability of our AgNF-GFRHybrimer composite as a transparent conducting film, we fabricated a flexible organic light-emitting diode (OLED) device on the AgNF-GFRHybrimer film; the OLED showed st...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
Recently, silver nanowires (AgNWs) have attracted considerable interest for their potential applicat...
We report an Ag nanofiber-embedded glass-fabric reinforced hybrimer (AgNF-GFRHybrimer) composite fil...
We report a high-performance, flexible and robust metal nanotrough-embedded transparent conducting h...
The unstable mechanical properties of flexible transparent conductive films (TCFs) make it difficult...
We fabricated transparent composite films which have good thermal stability, low CTE (coefficient of...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
Here, we report a comprehensive analysis of the electrical, optical, mechanical, and surface morphol...
Transparent, conductive, and flexible Ag nanowire (NW)-polyimide (PI) composite films were fabricate...
Transparent, conductive, and flexible Ag nanowire (NW)-polyimide (PI) composite films were fabricate...
We demonstrate the fabrication of highly transparent, electro-conductive, durable, and eco-friendly ...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
Recently, silver nanowires (AgNWs) have attracted considerable interest for their potential applicat...
We report an Ag nanofiber-embedded glass-fabric reinforced hybrimer (AgNF-GFRHybrimer) composite fil...
We report a high-performance, flexible and robust metal nanotrough-embedded transparent conducting h...
The unstable mechanical properties of flexible transparent conductive films (TCFs) make it difficult...
We fabricated transparent composite films which have good thermal stability, low CTE (coefficient of...
The emergence of flexible and stretchable optoelectronics has motivated the development of new trans...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
We present new flexible, transparent, and conductive coatings composed of an annealed silver nanowir...
Here, we report a comprehensive analysis of the electrical, optical, mechanical, and surface morphol...
Transparent, conductive, and flexible Ag nanowire (NW)-polyimide (PI) composite films were fabricate...
Transparent, conductive, and flexible Ag nanowire (NW)-polyimide (PI) composite films were fabricate...
We demonstrate the fabrication of highly transparent, electro-conductive, durable, and eco-friendly ...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm i...
Recently, silver nanowires (AgNWs) have attracted considerable interest for their potential applicat...