High aspect-ratio ultra-long (> 70 ?m) and thin (< 50 nm) copper nanowires (Cu-NW) were synthesized in large quantities using a solution-based approach. The nanowires, along with reduced graphene-oxide sheets, were coated onto glass as well as plastic substrates, thus producing transparent conducting electrodes. Our fabricated transparent electrodes achieved high optical transmittance and low sheet resistance, comparable to those of existing Indium Tin Oxide (ITO) electrodes. Furthermore, our electrodes show no notable loss of performance under high temperature and high humidity conditions. Adaptations of such nano-materials into smooth and ultrathin films lead to potential alternatives for the conventional tin-doped indium oxide, with appl...
We report advances in the fabrication and characterization of transparent conductive electrodes base...
We report advances in the fabrication and characterization of transparent conductive electrodes base...
In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conducting electrodes (TCEs) were ...
High aspect ratio copper nanowires were synthesized, using a solution-based approach. The nanowires ...
Silver nanowires with 40 nm diameter and copper nanowires with 150 nm diameter were synthesized usin...
We report the synthesis of ultra-high aspect ratio copper nanowires (CuNW) and fabrication of CuNW-b...
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...
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...
Copper nanowires (CuNWs) with ultrahigh aspect ratio are synthesized with a solution process and spr...
Clean and affordable energy, especially solar energy, is becoming more and more important as our ann...
In this paper, we present ITO-free hybrid transparent conducting electrodes that are based on bilaye...
Transparent electrodes that conduct electrical current and allow light to pass through are widely us...
The demand for flat-panel televisions, e-readers, smart-phones, and touch-screens has been increasin...
We report advances in the fabrication and characterization of transparent conductive electrodes base...
We report advances in the fabrication and characterization of transparent conductive electrodes base...
In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conducting electrodes (TCEs) were ...
High aspect ratio copper nanowires were synthesized, using a solution-based approach. The nanowires ...
Silver nanowires with 40 nm diameter and copper nanowires with 150 nm diameter were synthesized usin...
We report the synthesis of ultra-high aspect ratio copper nanowires (CuNW) and fabrication of CuNW-b...
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...
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...
Copper nanowires (CuNWs) with ultrahigh aspect ratio are synthesized with a solution process and spr...
Clean and affordable energy, especially solar energy, is becoming more and more important as our ann...
In this paper, we present ITO-free hybrid transparent conducting electrodes that are based on bilaye...
Transparent electrodes that conduct electrical current and allow light to pass through are widely us...
The demand for flat-panel televisions, e-readers, smart-phones, and touch-screens has been increasin...
We report advances in the fabrication and characterization of transparent conductive electrodes base...
We report advances in the fabrication and characterization of transparent conductive electrodes base...
In this work, Graphene/Copper Nanowire (G/CuNW) based transparent conducting electrodes (TCEs) were ...