Polycrystalline Fe-doped alumina (Al2O3) ceramics have been produced and used as a substrate for organized carbon nanotubes (CNTs) growth by catalytic chemical vapor deposition (CCVD). In these substrates, Fe3+ cations, which are the catalyst source, are initially substituted to Al3+ in a-Al2O3, instead of being simply deposited as a thin Fe layer on the surface of the substrate. The selective reduction of these substrates resulted in in situ formation of homogeneously distributed Fe nanoparticles forming patterns at nanometerscale steps and kinks. These nanoparticles then catalyzed the growth of high quality CNTs, with some degree of organization thanks to their interaction with the topography of the substrate
AbstractMetal oxide layer helps to support carbon nanotubes (CNTs) aligned perpendicular as well as ...
We report herein, a scalable method for the preparation of alumina (Al2O3)-phosphate ceramics reinfo...
Doctor of PhilosophyDepartment of Chemical EngineeringPlacidus B. AmamaThe first part of this resear...
Fe-doped alumina (Fe-Al2O3) materials with a controlled microstructure could be designed for some sp...
Homogeneous precipitation of hydroxides was investigated as an alternative method to synthesize Fe-d...
Alumina is a key material to activate catalyisis of carbon nanotube growth. Although alumina is know...
Carbon nanotubes (CNTs) were successfully grown on the surface of carbon fibre reinforcements in car...
International audienceMulti-walled carbon nanotubes (MWCNTs) have been produced from ethylene by Flu...
We have studied the lifetime, activity, and evolution of Fe catalysts supported on different types o...
Both colloidal iron oxide and aluminum ferrite nanocrystals can initiate the growth of vertically al...
International audienceMulti-walled carbon nanotubes (MWCNTs) have been produced from ethylene by Flu...
The production of carbon nanotubes by the chemical catalytic vapour deposition, CCVD, process was ex...
peer reviewedThe production of carbon nanotubes by the chemical catalytic vapour deposition, CCVD, p...
Aligned carbon nanotubes (CNTs) can be readily synthesized on quartz or silicon-oxide-coated Si subs...
Metal oxide layer helps to support carbon nanotubes (CNTs) aligned perpendicular as well as preventi...
AbstractMetal oxide layer helps to support carbon nanotubes (CNTs) aligned perpendicular as well as ...
We report herein, a scalable method for the preparation of alumina (Al2O3)-phosphate ceramics reinfo...
Doctor of PhilosophyDepartment of Chemical EngineeringPlacidus B. AmamaThe first part of this resear...
Fe-doped alumina (Fe-Al2O3) materials with a controlled microstructure could be designed for some sp...
Homogeneous precipitation of hydroxides was investigated as an alternative method to synthesize Fe-d...
Alumina is a key material to activate catalyisis of carbon nanotube growth. Although alumina is know...
Carbon nanotubes (CNTs) were successfully grown on the surface of carbon fibre reinforcements in car...
International audienceMulti-walled carbon nanotubes (MWCNTs) have been produced from ethylene by Flu...
We have studied the lifetime, activity, and evolution of Fe catalysts supported on different types o...
Both colloidal iron oxide and aluminum ferrite nanocrystals can initiate the growth of vertically al...
International audienceMulti-walled carbon nanotubes (MWCNTs) have been produced from ethylene by Flu...
The production of carbon nanotubes by the chemical catalytic vapour deposition, CCVD, process was ex...
peer reviewedThe production of carbon nanotubes by the chemical catalytic vapour deposition, CCVD, p...
Aligned carbon nanotubes (CNTs) can be readily synthesized on quartz or silicon-oxide-coated Si subs...
Metal oxide layer helps to support carbon nanotubes (CNTs) aligned perpendicular as well as preventi...
AbstractMetal oxide layer helps to support carbon nanotubes (CNTs) aligned perpendicular as well as ...
We report herein, a scalable method for the preparation of alumina (Al2O3)-phosphate ceramics reinfo...
Doctor of PhilosophyDepartment of Chemical EngineeringPlacidus B. AmamaThe first part of this resear...