We report on the identification of efficient combinations of catalyst, carbon feedstock, and temperature for the ethanol chemical vapour deposition (CVD) growth of single-wall carbon nanotubes (SWCNTs) onto silicon substrates. Different catalyst preparations, based on organometallic salts (Co, Fe, Mo, Ni acetate, and bimetallic mixtures), have been spin coated onto thermally grown silicon dioxide on silicon chips to perform tests in a temperature range between 500 and 900 °C. The samples have been then characterized by Raman spectroscopy, atomic force microscopy, scanning electron microscopy, and transmission electron microscopy. Assuming the growth of high-quality isolated nanotubes as target, the ratio in Raman spectra between the intensi...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
The technique used for synthesizing large quantity carbon nanotubes (CNTs) directly on the surface o...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
The technique used for synthesizing large quantity carbon nanotubes (CNTs) directly on the surface o...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report on the identification of efficient combinations of catalyst, carbon feedstock, and tempera...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
We report a comparison of the behaviour of different catalysts for the ethanol-CVD growth of single-...
The technique used for synthesizing large quantity carbon nanotubes (CNTs) directly on the surface o...