Ion track, nanoporous membranes were employed as templates for the preparation of CdTe nanowires. For this purpose, electrochemical deposition from a bath containing Cd and Te ions was employed. This process leads to high aspect ratio CdTe nanowires, which were harvested and placed on a substrate with lithographically patterned, interdigitated electrodes. Focused ion beam-induced metallization was used to produce individual nanowires with electrical contacts and electrical measurements were performed on these individual nanowires. The influence of a bottom gate was investigated and it was found that surface passivation leads to improved transport properties
Cylindrical nano-pores of an anodized aluminum oxide layer on the surface of bulk aluminum were used...
Conductive nanowires were deposited by a focused gallium ion beam using W(CO)6 and (CH3)3CH3C5H4Pt a...
In this paper, we present our work on the electrodeposited CdSe semiconducting nanowires. Using a lo...
CdTe nanowires with controlled composition were cathodically electrodeposited using track-etched pol...
CdTe nanowires with controlled composition were cathodically electrodeposited using track-etched pol...
Highly ordered CdTe nanowire arrays were prepared by electrochemical deposition into the pores of an...
Highly ordered CdTe nanowire arrays were prepared by electrochemical deposition into the pores of an...
ABSTRACT: Cadmium telluride nanoribbons were synthe-sized electrochemically and formed into nanodevi...
Semiconducting, metal, and multi-segmented nanowires of 200 nm diameters with lengths up to 10_m wer...
CdTe nanowires were electrodeposited in ion track membranes with pore diameters in the range 100 – 2...
We have successfully developed a simple, reproducible and scalable technique for growing CdTe nanoro...
Metal-Cd0.42Te0.58-metal nanowires were electrodeposited into the pores of anodized aluminum oxide (...
Metal-Cd0.42Te0.58-metal nanowires were electrodeposited into the pores of anodized aluminum oxide (...
In this work, we report the preparation of nanostructured electrodes based on dense arrays of vertic...
II-VI group compound semiconductors such as CdS, CdSe, and CdTe nanowire arrays have been prepared b...
Cylindrical nano-pores of an anodized aluminum oxide layer on the surface of bulk aluminum were used...
Conductive nanowires were deposited by a focused gallium ion beam using W(CO)6 and (CH3)3CH3C5H4Pt a...
In this paper, we present our work on the electrodeposited CdSe semiconducting nanowires. Using a lo...
CdTe nanowires with controlled composition were cathodically electrodeposited using track-etched pol...
CdTe nanowires with controlled composition were cathodically electrodeposited using track-etched pol...
Highly ordered CdTe nanowire arrays were prepared by electrochemical deposition into the pores of an...
Highly ordered CdTe nanowire arrays were prepared by electrochemical deposition into the pores of an...
ABSTRACT: Cadmium telluride nanoribbons were synthe-sized electrochemically and formed into nanodevi...
Semiconducting, metal, and multi-segmented nanowires of 200 nm diameters with lengths up to 10_m wer...
CdTe nanowires were electrodeposited in ion track membranes with pore diameters in the range 100 – 2...
We have successfully developed a simple, reproducible and scalable technique for growing CdTe nanoro...
Metal-Cd0.42Te0.58-metal nanowires were electrodeposited into the pores of anodized aluminum oxide (...
Metal-Cd0.42Te0.58-metal nanowires were electrodeposited into the pores of anodized aluminum oxide (...
In this work, we report the preparation of nanostructured electrodes based on dense arrays of vertic...
II-VI group compound semiconductors such as CdS, CdSe, and CdTe nanowire arrays have been prepared b...
Cylindrical nano-pores of an anodized aluminum oxide layer on the surface of bulk aluminum were used...
Conductive nanowires were deposited by a focused gallium ion beam using W(CO)6 and (CH3)3CH3C5H4Pt a...
In this paper, we present our work on the electrodeposited CdSe semiconducting nanowires. Using a lo...