Vertically aligned, highly ordered, large area arrays of nanostructures are important building blocks for multifunctional devices. Here, ZnO nanorod arrays are selectively synthesized on Si substrates by a solution method within patterns created by nanoimprint lithography. The growth modes of two dimensional nucleation-driven wedding cakes and screw dislocation-driven spirals are inferred to determine the top end morphologies of the nanorods. Sub-bandgap photoluminescence of the nanorods is greatly enhanced by the manipulation of the hydrogen donors via a post-growth thermal treatment. Lasing behavior is facilitated in the nanorods with faceted top ends formed from wedding cakes growth mode. This work demonstrates the control of morphologie...
International audienceZnO is a promising material for the fabrication of light emitting devices. One...
Vertically aligned ZnO nanorods arrays were synthesized on glass substrates. ZnO seed layers were pr...
In this work the growth of c-axis aligned zinc oxide nanorods on non-epitaxially matched substrates ...
©2004 American Institute of Physics. The electronic version of this article is the complete one and ...
The use of a wet chemical method to selectively grow ZnO microrod and nanorod arrays on Si substrate...
In this work we present a method for the deposition of periodically ordered, c-axis aligned ZnO nano...
In this work we present a method for the deposition of periodically ordered, c-axis aligned ZnO nano...
In this work we present a method for the deposition of periodically ordered, c-axis aligned ZnO nano...
The morphological characteristics of ZnO nanostructures were systematically studied from dense rods ...
Zinc oxide (ZnO) is a well-studied wide band gap (~3.37 eV) n-type semiconductor material with signi...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
An effective approach is demonstrated for growing large-area, hexagonally patterned, aligned ZnO nan...
1-D nanostructure arrays recently attract much attention because of their unique optical, structural...
Nanosphere lithography (NSL) is a successful technique for fabricating highly ordered arrays of ZnO ...
Nanosphere lithography (NSL) is a successful technique for fabricating highly ordered arrays of ZnO ...
International audienceZnO is a promising material for the fabrication of light emitting devices. One...
Vertically aligned ZnO nanorods arrays were synthesized on glass substrates. ZnO seed layers were pr...
In this work the growth of c-axis aligned zinc oxide nanorods on non-epitaxially matched substrates ...
©2004 American Institute of Physics. The electronic version of this article is the complete one and ...
The use of a wet chemical method to selectively grow ZnO microrod and nanorod arrays on Si substrate...
In this work we present a method for the deposition of periodically ordered, c-axis aligned ZnO nano...
In this work we present a method for the deposition of periodically ordered, c-axis aligned ZnO nano...
In this work we present a method for the deposition of periodically ordered, c-axis aligned ZnO nano...
The morphological characteristics of ZnO nanostructures were systematically studied from dense rods ...
Zinc oxide (ZnO) is a well-studied wide band gap (~3.37 eV) n-type semiconductor material with signi...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
An effective approach is demonstrated for growing large-area, hexagonally patterned, aligned ZnO nan...
1-D nanostructure arrays recently attract much attention because of their unique optical, structural...
Nanosphere lithography (NSL) is a successful technique for fabricating highly ordered arrays of ZnO ...
Nanosphere lithography (NSL) is a successful technique for fabricating highly ordered arrays of ZnO ...
International audienceZnO is a promising material for the fabrication of light emitting devices. One...
Vertically aligned ZnO nanorods arrays were synthesized on glass substrates. ZnO seed layers were pr...
In this work the growth of c-axis aligned zinc oxide nanorods on non-epitaxially matched substrates ...