Cu nanowires (Copper nanowires) have attracted lots of attention recently due to their potential applications in transparent electrodes, surface enhanced Raman scattering (SERS) based sensors, and solar cells. However, as the surface composition and morphology of Cu nanowires severely influence the performance of the devices based on them, facile surface modification methods need to be developed. Herein, we propose a room-temperature, time-saving aqueous solution method, through which clean Cu nanowires with small Ag nanoparticles decorating around them could be achieved. The unique “sesame candy bar” structure of Cu nanowires brought about significant enhancement on the electrical, optical, and mechanical performances of Cu nanowire networ...
One-dimensional inorganic nanowires have many properties different from their bulk form. They have b...
AbstractHierarchical structure of copper nanowires (Cu NWs) was formed by using simple solution proc...
A rather low efficiency for Cu(In<sub>1–<i>x</i></sub>, Ga<sub><i>x</i></sub>)Se<sub>2</sub> (CIGS...
Transparent electrodes are essential elements of devices bearing a screen or display, as well as sol...
Due to the high abundance of copper on the earth and its high intrinsic electrical conductivity, cop...
Copper nanowire networks are considered a promising alternative to indium tin oxide as transparent c...
Abstract Copper nanowires have the potential to reach and even exceed the indium tin oxide performan...
In this paper, transparent electrodes with dense Cu@Ag alloy nanowires embedded in the stretchable s...
Transparent electrodes are implanted in a lot of devices such as solar cell, OLED, touch screen or t...
Cu nanowires (NWs) are attracting considerable attention as alternatives to Ag NWs for next-generati...
The environmentally benign synthesis of ultra-long copper nanowires with successful control of diame...
High aspect ratio copper nanowires were synthesized, using a solution-based approach. The nanowires ...
Copper nanowires have the potential to reach and even exceed the indium tin oxide performances as fl...
We report the synthesis of ultra-high aspect ratio copper nanowires (CuNW) and fabrication of CuNW-b...
Copper nanowire networks are considered a promising alternative to indium tin oxide as transparent c...
One-dimensional inorganic nanowires have many properties different from their bulk form. They have b...
AbstractHierarchical structure of copper nanowires (Cu NWs) was formed by using simple solution proc...
A rather low efficiency for Cu(In<sub>1–<i>x</i></sub>, Ga<sub><i>x</i></sub>)Se<sub>2</sub> (CIGS...
Transparent electrodes are essential elements of devices bearing a screen or display, as well as sol...
Due to the high abundance of copper on the earth and its high intrinsic electrical conductivity, cop...
Copper nanowire networks are considered a promising alternative to indium tin oxide as transparent c...
Abstract Copper nanowires have the potential to reach and even exceed the indium tin oxide performan...
In this paper, transparent electrodes with dense Cu@Ag alloy nanowires embedded in the stretchable s...
Transparent electrodes are implanted in a lot of devices such as solar cell, OLED, touch screen or t...
Cu nanowires (NWs) are attracting considerable attention as alternatives to Ag NWs for next-generati...
The environmentally benign synthesis of ultra-long copper nanowires with successful control of diame...
High aspect ratio copper nanowires were synthesized, using a solution-based approach. The nanowires ...
Copper nanowires have the potential to reach and even exceed the indium tin oxide performances as fl...
We report the synthesis of ultra-high aspect ratio copper nanowires (CuNW) and fabrication of CuNW-b...
Copper nanowire networks are considered a promising alternative to indium tin oxide as transparent c...
One-dimensional inorganic nanowires have many properties different from their bulk form. They have b...
AbstractHierarchical structure of copper nanowires (Cu NWs) was formed by using simple solution proc...
A rather low efficiency for Cu(In<sub>1–<i>x</i></sub>, Ga<sub><i>x</i></sub>)Se<sub>2</sub> (CIGS...