We present a study of the electric field effect on electrochemically grown ultrathin, straight platinum nanowires with minimum diameter of 15 nm and length in the micrometer range, synthesized on a silicon oxide substrate between metal electrodes in H2PtCl6 solution. The influence of the concentration of the platinumcontaining acid and the frequency of the applied voltage on the diameter of the nanowires is discussed with a corresponding theoretical analysis. We demonstrate for the first time that the electric field profile, provided by the specific geometry of the metal electrodes, dramatically influences the growth and morphology of the nanowires. Finally, we provide guidelines for the controlled fabrication and contacting of straight, ul...
Ultrathin one-dimensional (1D) nanostructures such as nanowires and nanorods have drawn considerable...
One dimensional nanostructures (nanowires) have emerged as important building blocks for micro/nano ...
In this work, we fabricate gold nanowires with well controlled critical dimensions using a recently ...
The aim of this work is to make electrochemical metal nanowire growth a competitive method, being up...
Inherent limitations of traditional lithography have prompted the search for means of achieving self...
Semiconductor nanowires with precisely controlled structure, and hence well-defined electronic and o...
This work delineates the mechanism by which directional nanowire growth occurs in the directed elect...
The recent advances in the field of nanoscience and nanotechnology have motivated andchallenged the ...
This paper describes the synthesis of single-crystal nanowires of Pt directly on the surface of meta...
We describe the reversible assembly of an aqueous suspension of metal nanowires into two different 2...
Nanotechnology enables a diversity of new effects compared to the classical physical properties of t...
Platinum nanowires with controlled texture and crystallite size were fabricated in nanoporous ion-tr...
Ultrathin one-dimensional (1D) nanostructures such as nanowires and nanorods have drawn considerable...
The advancement of conductive and flexible thin films is relevant to an assortment of energy applica...
We report the self assembly of nanostructures via. the bottom-up approach by dielectrophoresis. Diel...
Ultrathin one-dimensional (1D) nanostructures such as nanowires and nanorods have drawn considerable...
One dimensional nanostructures (nanowires) have emerged as important building blocks for micro/nano ...
In this work, we fabricate gold nanowires with well controlled critical dimensions using a recently ...
The aim of this work is to make electrochemical metal nanowire growth a competitive method, being up...
Inherent limitations of traditional lithography have prompted the search for means of achieving self...
Semiconductor nanowires with precisely controlled structure, and hence well-defined electronic and o...
This work delineates the mechanism by which directional nanowire growth occurs in the directed elect...
The recent advances in the field of nanoscience and nanotechnology have motivated andchallenged the ...
This paper describes the synthesis of single-crystal nanowires of Pt directly on the surface of meta...
We describe the reversible assembly of an aqueous suspension of metal nanowires into two different 2...
Nanotechnology enables a diversity of new effects compared to the classical physical properties of t...
Platinum nanowires with controlled texture and crystallite size were fabricated in nanoporous ion-tr...
Ultrathin one-dimensional (1D) nanostructures such as nanowires and nanorods have drawn considerable...
The advancement of conductive and flexible thin films is relevant to an assortment of energy applica...
We report the self assembly of nanostructures via. the bottom-up approach by dielectrophoresis. Diel...
Ultrathin one-dimensional (1D) nanostructures such as nanowires and nanorods have drawn considerable...
One dimensional nanostructures (nanowires) have emerged as important building blocks for micro/nano ...
In this work, we fabricate gold nanowires with well controlled critical dimensions using a recently ...