By using spectral reflectance (SR), we report on the in situ monitoring of ZnO nanorod growth on Si and sapphire substrates by catalyst-free, low pressure metalorganic chemical vapor deposition. Initially, the SR signals showed the same behavior at various wavelengths but at some point they began to strongly interfere and oscillate. This is interpreted as the starting point of the growth of nanorods. Simulation results using a multilayer model confimed our analysis. (c) 2008 Elsevier B.V. All rights reserved.X1112sciescopu
In this paper we will give an overview of the status of catalytic growth and of low-temperature chem...
ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Ka...
We demonstrate control of ZnO nanorod density for self-organized growth on ZnO buffer layers on Si b...
The growth procedure of ZnO nanorods was monitored by in-situ spectral reflectance (SR) method. The ...
We observed a transition from film to vertically well-aligned nanorods for ZnO grown on sapphire (00...
ZnO nanorods were grown on a zinc substrate via cathodic delamination of a polymer coating, a tailor...
This research article describes the large scale fabrication of ZnO nanorods of various shapes on Si(...
A simple and cost effective method has been employed for the random growth and oriented ZnO nanorod ...
Verticallywell-aligned ZnO nanorods on Si substrates were prepared by atwo-step chemical bath deposi...
We report on optical properties of ZnO nanorods grown on p-type Si substrates by an electric-field a...
Two deep level defects (2.25 and 2.03 eV) associated with oxygen vacancies (Vo) were identified in Z...
We report on optical properties of ZnO nanorods grown on p-type Si substrates by an electric-field a...
ZnO nanorod arrays with different morphologies were grown by metalorganic chemical vapor deposition ...
Pulsed laser deposition without a catalyst is used to grow ZnO nanorods less than 10 nm in diameter....
Zinc oxide (ZnO) nanorods (NRs) are encouraging constituents in a wide range of nanoscale apparatus ...
In this paper we will give an overview of the status of catalytic growth and of low-temperature chem...
ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Ka...
We demonstrate control of ZnO nanorod density for self-organized growth on ZnO buffer layers on Si b...
The growth procedure of ZnO nanorods was monitored by in-situ spectral reflectance (SR) method. The ...
We observed a transition from film to vertically well-aligned nanorods for ZnO grown on sapphire (00...
ZnO nanorods were grown on a zinc substrate via cathodic delamination of a polymer coating, a tailor...
This research article describes the large scale fabrication of ZnO nanorods of various shapes on Si(...
A simple and cost effective method has been employed for the random growth and oriented ZnO nanorod ...
Verticallywell-aligned ZnO nanorods on Si substrates were prepared by atwo-step chemical bath deposi...
We report on optical properties of ZnO nanorods grown on p-type Si substrates by an electric-field a...
Two deep level defects (2.25 and 2.03 eV) associated with oxygen vacancies (Vo) were identified in Z...
We report on optical properties of ZnO nanorods grown on p-type Si substrates by an electric-field a...
ZnO nanorod arrays with different morphologies were grown by metalorganic chemical vapor deposition ...
Pulsed laser deposition without a catalyst is used to grow ZnO nanorods less than 10 nm in diameter....
Zinc oxide (ZnO) nanorods (NRs) are encouraging constituents in a wide range of nanoscale apparatus ...
In this paper we will give an overview of the status of catalytic growth and of low-temperature chem...
ZnO nanorods arrays are synthesized over the different substrates namely; Indium Tin Oxide (ITO), Ka...
We demonstrate control of ZnO nanorod density for self-organized growth on ZnO buffer layers on Si b...