Nickel silicide nanoparticles were prepared in situ on carbon nanofibers through pyrolysis of electrospun fibers containing poly(acrylonitrile) (PAN, carbon fiber precursor), silazane (SiCN ceramic precursor), and nickel chloride (nickel source). SiCN ceramics produced in carbon nanofibers during the pyrolysis expanded the graphitic interlayer spacing and facilitated the diffusion of metal atoms to the fiber surfaces, leading to the formation of nickel silicide nanoparticles at a reduced temperature. In addition, nickel silicide nanoparticles catalyzed an in situ formation of carbon nanotubes, with carbon sourced from the decomposition of silazane. The method introduces a simple route to produce carbon supported metal nanoparticles for cata...
This paper reports two new types of carbon nanofibers synthesis by thermal decomposition of n-hexane...
Carbon nanofibers (CNFs) were synthesized through nickel ion (Ni2+) impregnation of powdered activat...
In order to create strong composite materials, a good dispersion of carbon nanotubes (CNTs) and nano...
An effective new technique was developed to help carbon nanofibers (CNFs) grow on carbon fibers (CFs...
This study covers two major projects. In the first project, polymer-derived ceramics composite of me...
Carbon Nanofibers (CNF) layers were synthesized nickel-based thin-films on flat fused silica substra...
A large scale synthesis of carbon nanofibers with a controlled diameter of about 50 nm has been achi...
Multibranched carbon nanofiber (CNF) is produced by a thermal chemical vapor deposition method using...
Infiltration of nickel(II) hydroxide inside a bacterial cellulose gel followed by thermal treatment ...
In order to improve the deposition rate and microstructure of pyrocarbon, nickel was introduced by e...
AbstractIn order to improve the deposition rate and microstructure of pyrocarbon, nickel was introdu...
Carbon nanofibers (diameter range, 3-100 nm; length range, 1.1-1000 µm) have been known for a long t...
This paper reports two new types of carbon nanofibers synthesis by thermal decomposition of n-hexane...
Carbon nanotubes were grown on the carbon nanofibers by a gas phase thermal decomposition method usi...
This paper describes the catalytic formation of a layer of carbon nanofibers (CNFs) on Ni foam, resu...
This paper reports two new types of carbon nanofibers synthesis by thermal decomposition of n-hexane...
Carbon nanofibers (CNFs) were synthesized through nickel ion (Ni2+) impregnation of powdered activat...
In order to create strong composite materials, a good dispersion of carbon nanotubes (CNTs) and nano...
An effective new technique was developed to help carbon nanofibers (CNFs) grow on carbon fibers (CFs...
This study covers two major projects. In the first project, polymer-derived ceramics composite of me...
Carbon Nanofibers (CNF) layers were synthesized nickel-based thin-films on flat fused silica substra...
A large scale synthesis of carbon nanofibers with a controlled diameter of about 50 nm has been achi...
Multibranched carbon nanofiber (CNF) is produced by a thermal chemical vapor deposition method using...
Infiltration of nickel(II) hydroxide inside a bacterial cellulose gel followed by thermal treatment ...
In order to improve the deposition rate and microstructure of pyrocarbon, nickel was introduced by e...
AbstractIn order to improve the deposition rate and microstructure of pyrocarbon, nickel was introdu...
Carbon nanofibers (diameter range, 3-100 nm; length range, 1.1-1000 µm) have been known for a long t...
This paper reports two new types of carbon nanofibers synthesis by thermal decomposition of n-hexane...
Carbon nanotubes were grown on the carbon nanofibers by a gas phase thermal decomposition method usi...
This paper describes the catalytic formation of a layer of carbon nanofibers (CNFs) on Ni foam, resu...
This paper reports two new types of carbon nanofibers synthesis by thermal decomposition of n-hexane...
Carbon nanofibers (CNFs) were synthesized through nickel ion (Ni2+) impregnation of powdered activat...
In order to create strong composite materials, a good dispersion of carbon nanotubes (CNTs) and nano...