The fabricating of transparent conductive films with low resistance, high transparency, flexibility and air stability is significant in the study of flexible electronics. In this work, Cu nanowire/Graphene/Al doped ZnO (Cu/Gra/AZO) composite transparent conductive films were fabricated on PET substrate at room temperature. It is found that this composite film has a high transmittance of 74% at 550 nm, a low sheet resistance of 9.40 X/sq and good air stability. In this sandwich structure electrode, Cu nanowires (NWs) play an important role for ensuring the low resistance of the composite film, and the addition of graphene further reduces the resistance plus protects Cu NWs from oxidation. Moreover, the top layer AZO can protect the graphene ...
A hybrid transparent conductive film, and methods for fabricating such hybrid transparent conductive...
High aspect-ratio ultra-long (> 70 ?m) and thin (< 50 nm) copper nanowires (Cu-NW) were synthesized ...
Hybrid films composed of reduced graphene oxide (RG-O) and Cu nanowires (NWs) were prepared. Compare...
In recent years, flexible transparent conducting films (TCFs) have attracted considerable research i...
In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conducting electrodes (TCEs) were ...
Copper nanowire (Cu NW) based transparent conductors are promising candidates to replace ITO (indium...
Copper nanowire (Cu NW) based transparent conductors are promising candidates to replace ITO (indium...
This work demonstrates a one-step process to synthesize uniformly dispersed hybrid nanomaterial cont...
Copper nanowire (Cu NW) based transparent conductors are promising candidates to replace ITO (indium...
Publisher Copyright: © 2021In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conduct...
Publisher Copyright: © 2021In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conduct...
Silver nanowires with 40 nm diameter and copper nanowires with 150 nm diameter were synthesized usin...
Copper nanowires (CuNWs) with ultrahigh aspect ratio are synthesized with a solution process and spr...
A hybrid transparent conductive film, and methods for fabricating such hybrid transparent conductive...
We prepared transparent conducting composite electrodes composed of silver nanowires (Ag NWs) and re...
A hybrid transparent conductive film, and methods for fabricating such hybrid transparent conductive...
High aspect-ratio ultra-long (> 70 ?m) and thin (< 50 nm) copper nanowires (Cu-NW) were synthesized ...
Hybrid films composed of reduced graphene oxide (RG-O) and Cu nanowires (NWs) were prepared. Compare...
In recent years, flexible transparent conducting films (TCFs) have attracted considerable research i...
In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conducting electrodes (TCEs) were ...
Copper nanowire (Cu NW) based transparent conductors are promising candidates to replace ITO (indium...
Copper nanowire (Cu NW) based transparent conductors are promising candidates to replace ITO (indium...
This work demonstrates a one-step process to synthesize uniformly dispersed hybrid nanomaterial cont...
Copper nanowire (Cu NW) based transparent conductors are promising candidates to replace ITO (indium...
Publisher Copyright: © 2021In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conduct...
Publisher Copyright: © 2021In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conduct...
Silver nanowires with 40 nm diameter and copper nanowires with 150 nm diameter were synthesized usin...
Copper nanowires (CuNWs) with ultrahigh aspect ratio are synthesized with a solution process and spr...
A hybrid transparent conductive film, and methods for fabricating such hybrid transparent conductive...
We prepared transparent conducting composite electrodes composed of silver nanowires (Ag NWs) and re...
A hybrid transparent conductive film, and methods for fabricating such hybrid transparent conductive...
High aspect-ratio ultra-long (> 70 ?m) and thin (< 50 nm) copper nanowires (Cu-NW) were synthesized ...
Hybrid films composed of reduced graphene oxide (RG-O) and Cu nanowires (NWs) were prepared. Compare...