Using electrochemical deposition, Cu nanowire arrays have been successfully fabricated by home-made polycarbonate ion-track templates. The diameters were well controlled by etching time of templates. The minimum diameter is 15 nm. The morphologies and structures were analyzed by scanning electron microscopy, transmission electron microscopy and X-ray diffraction. The wires prefer [1 1 0] growth direction due to H ions absorption. The optical properties of Cu nanowire arrays are studied by an ultraviolet/visible/near-infrared spectrophotometer. Two extinction peaks were observed in spectra. The optical mechanism is discussed based on surface plasmon resonanc
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Gold nanowires with diameters (d) between,15 run and 200 urn and with length/diameter ratio of 700 w...
127 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Free standing CuNWs were grow...
Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on aluminium substrate ha...
WOS: 000371128700014Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on al...
612-618Cu nanowire arrays of three different diameters have been synthesized via template assisted e...
Gold nanowire arrays with different sizes were fabricated by electrochemical deposition in etched io...
Copper nanowires were prepared through electrochemical template synthesis using Nucleopore polycarbo...
Nanowire arrays of copper with uniform diameters have been synthesized by potentiostatic electrochem...
The hallmark of materials science is the ability to tailor the structures of a given material to pro...
Single crystalline Cu nanowires with controlled diameters and aspect ratios have been synthesized us...
In this study, Ni and Cu nanowire arrays and Ni/Cu superlattice nanowire arrays are fabricated using...
Abstract. Cu nanowire arrays have been synthesized using potentiostatic electrodeposition within the...
Au-Cu heterojunction nanowires with different diameters were fabricated with assistance of the anodi...
Cu nanowires (Copper nanowires) have attracted lots of attention recently due to their potential app...
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Gold nanowires with diameters (d) between,15 run and 200 urn and with length/diameter ratio of 700 w...
127 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Free standing CuNWs were grow...
Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on aluminium substrate ha...
WOS: 000371128700014Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on al...
612-618Cu nanowire arrays of three different diameters have been synthesized via template assisted e...
Gold nanowire arrays with different sizes were fabricated by electrochemical deposition in etched io...
Copper nanowires were prepared through electrochemical template synthesis using Nucleopore polycarbo...
Nanowire arrays of copper with uniform diameters have been synthesized by potentiostatic electrochem...
The hallmark of materials science is the ability to tailor the structures of a given material to pro...
Single crystalline Cu nanowires with controlled diameters and aspect ratios have been synthesized us...
In this study, Ni and Cu nanowire arrays and Ni/Cu superlattice nanowire arrays are fabricated using...
Abstract. Cu nanowire arrays have been synthesized using potentiostatic electrodeposition within the...
Au-Cu heterojunction nanowires with different diameters were fabricated with assistance of the anodi...
Cu nanowires (Copper nanowires) have attracted lots of attention recently due to their potential app...
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Gold nanowires with diameters (d) between,15 run and 200 urn and with length/diameter ratio of 700 w...
127 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Free standing CuNWs were grow...