[[abstract]]Influence of post-treatment processes on the morphology of Fe-catalyst and the characteristics of the subsequently grown carbon nanotubes were systematically investigated. The reducing agent, which is either H-2 gases species or cracked ammonia, NH3, imposed most marked effect on the morphology of Fe-clusters. The Fe-catalysts, which were prepared from 0.1 M Fe(OR)(3) in xylene and were reduced by NH3 gas species, are nano-sized (50 nm), isolated and uniformly distributed. They result in carbon nanotubes of the highest purity and most density populated, exhibiting the largest electron field emission capacity. The Fe catalysts prepared by other conditions are interconnected or coarsened particulates, which induces the formation o...
Mg0.09FexCoyO (x + y = 0.1) solid solutions were synthesized by the ureic combustion route. Upon red...
Carbon nanotubes (CNTs) with their high mechanical, electrical, thermal and chemical properties are ...
We report the growth of carbon nanotubes on the size controlled iron catalytic nanoparticles. The na...
This paper is devoted to a survey of results obtained while investigating the growth processes of ca...
The iron catalyst nanoparticles were prepared on silicon wafers by solution process, which first spi...
We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary in situ gra...
ABSTRACT: We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary i...
The paper reported the investigation of the substrate preparation technique involving deposition of ...
Using a chemical vapor deposition (CVD) method, multi-walled carbon nanotubes with uniform diameters...
The formation mechanism of iron filled carbon nanotubes on oxidized silicon substrates precoated wit...
In the present study, multi-walled carbon nanotubes (MWCNT) were prepared in good quality and quanti...
Abstract: This article reports the synthesis of carbon nanotubes (CNTs) encapsulating iron (Fe) that...
A solution of ferrocene in ethanol and acetone was thermally decomposed on silica and porous alumina...
We report on the fabrication of carbon nanotubes (CNTs) at predefined positions and controlled morph...
AbstractIn the present study, multi-walled carbon nanotubes (MWCNT) were prepared in good quality an...
Mg0.09FexCoyO (x + y = 0.1) solid solutions were synthesized by the ureic combustion route. Upon red...
Carbon nanotubes (CNTs) with their high mechanical, electrical, thermal and chemical properties are ...
We report the growth of carbon nanotubes on the size controlled iron catalytic nanoparticles. The na...
This paper is devoted to a survey of results obtained while investigating the growth processes of ca...
The iron catalyst nanoparticles were prepared on silicon wafers by solution process, which first spi...
We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary in situ gra...
ABSTRACT: We study the Fe-catalyzed chemical vapor deposition of carbon nanotubes by complementary i...
The paper reported the investigation of the substrate preparation technique involving deposition of ...
Using a chemical vapor deposition (CVD) method, multi-walled carbon nanotubes with uniform diameters...
The formation mechanism of iron filled carbon nanotubes on oxidized silicon substrates precoated wit...
In the present study, multi-walled carbon nanotubes (MWCNT) were prepared in good quality and quanti...
Abstract: This article reports the synthesis of carbon nanotubes (CNTs) encapsulating iron (Fe) that...
A solution of ferrocene in ethanol and acetone was thermally decomposed on silica and porous alumina...
We report on the fabrication of carbon nanotubes (CNTs) at predefined positions and controlled morph...
AbstractIn the present study, multi-walled carbon nanotubes (MWCNT) were prepared in good quality an...
Mg0.09FexCoyO (x + y = 0.1) solid solutions were synthesized by the ureic combustion route. Upon red...
Carbon nanotubes (CNTs) with their high mechanical, electrical, thermal and chemical properties are ...
We report the growth of carbon nanotubes on the size controlled iron catalytic nanoparticles. The na...