WOS: 000371128700014Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on aluminium substrate have been synthesized by alternating current electrochemical deposition. Two-step anodization process has been performed to get the through-hole AAO with ordered nanochannels in 0.3 M oxalic acids at DC voltages 30, 40, 50 and 60 V, respectively. Structural characterization of the Cu nanowires has been analyzed by scanning electron microscopy (SEM) and X-ray diffraction (or) X-ray diffractometer (XRD). Our SEM analysis has revealed that the diameters of vertically oriented Cu nanowires are 15, 25, 45 and 60nm and the length of Cu nanowires having high packing density is about 15 mu m. XRD measurement has indicated that polyc...
Copper nanowires have been frequently researched due to its outstanding electrical conductivity and ...
Large-scale copper nanowires have been fabricated by potentiostatic electro-chemical deposition (ECD...
One-dimensional (1D) nanowires have attracted much attention recently due to their unique physical (...
Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on aluminium substrate ha...
Single crystalline Cu nanowires with controlled diameters and aspect ratios have been synthesized us...
Using electrochemical deposition, Cu nanowire arrays have been successfully fabricated by home-made ...
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Electrodeposition is an efficient and economical approach for template synthesis of one-dimensional ...
Au-Cu heterojunction nanowires with different diameters were fabricated with assistance of the anodi...
Metallic nanowire networks are emerging as potential replacements for transparent conducting oxide c...
International audienceAnodic aluminum oxide (AAO) films were prepared by alternative current (ac) ox...
Large arrays of aligned copper oxide nanowires were produced by electrodeposition, using anodic alum...
Abstract. Cu nanowire arrays have been synthesized using potentiostatic electrodeposition within the...
612-618Cu nanowire arrays of three different diameters have been synthesized via template assisted e...
Copper nanowires have been frequently researched due to its outstanding electrical conductivity and ...
Large-scale copper nanowires have been fabricated by potentiostatic electro-chemical deposition (ECD...
One-dimensional (1D) nanowires have attracted much attention recently due to their unique physical (...
Copper (Cu) nanowire arrays embedded in anodic aluminium oxide films (AAO) on aluminium substrate ha...
Single crystalline Cu nanowires with controlled diameters and aspect ratios have been synthesized us...
Using electrochemical deposition, Cu nanowire arrays have been successfully fabricated by home-made ...
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Copper nanowires were fabricated by electrochemical deposition inside anodic alumina template anodiz...
Electrodeposition is an efficient and economical approach for template synthesis of one-dimensional ...
Au-Cu heterojunction nanowires with different diameters were fabricated with assistance of the anodi...
Metallic nanowire networks are emerging as potential replacements for transparent conducting oxide c...
International audienceAnodic aluminum oxide (AAO) films were prepared by alternative current (ac) ox...
Large arrays of aligned copper oxide nanowires were produced by electrodeposition, using anodic alum...
Abstract. Cu nanowire arrays have been synthesized using potentiostatic electrodeposition within the...
612-618Cu nanowire arrays of three different diameters have been synthesized via template assisted e...
Copper nanowires have been frequently researched due to its outstanding electrical conductivity and ...
Large-scale copper nanowires have been fabricated by potentiostatic electro-chemical deposition (ECD...
One-dimensional (1D) nanowires have attracted much attention recently due to their unique physical (...