A hierarchical assembly of carbon nanofibers (CNFs), Pd-Sn nanoparticles, and carbon nanotubes (CNTs) was synthesized based on the template method. The metal particles were first immobilized on the pore walls of an anodic aluminum oxide (AAO) template. The following pyrolysis of C2H2 in the AAO pores simultaneously formed the arrays of CNTs, which deposited along the AAO pore walls, and a layer of flocculent CNFs, which catalytically grew from the metal particles and attached on the surface of the CNTs. This hierarchical structure supporting bimetallic particles can be applied in the fields of catalysts, fuel cells, chemical sensors, and so forth.X1178sciescopu
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Fabrication of ordered anodic alumina nanopore arrays and anodization parameters including electroly...
There is an increasing demand for engineered materials that are low cost and efficient for a wide ra...
International audienceHierarchical carbon nanostructures based on ultra-long carbon nanofibers (CNF)...
Hierarchical 1D carbon structures are attractive due to their mechanical, chemical andelectrochemica...
The fabrication and design of carbon-based hierarchical structures with tailored nano-architectures ...
The effect of reaction gas and catalyst on the growth of carbon nanotubes (CNTs) in the anodic alumi...
The fabrication and design of carbon-based hierarchical structures with tailored nano-architectures ...
Hybrid nanostructured arrays based on carbon nanotubes (CNT) and palladium or titanium dioxide mater...
Architectures of 3D hierarchical nanostructure arrays consisting of 1D nanostructures offers a large...
Single-walled and double-walled carbon nanotubes (SWNTs and DWNTs, respectively) possess excellent e...
Carbon nanotube arrays with densities up to 1012 cmÿ2, have been successfully synthesized by pyrolys...
International audienceA novel synthesis pathway is proposed in this work to prepare NiCo nanoalloy e...
This thesis addresses various types of synthetic methods for novel three dimensional nanomaterials a...
Filamentous ribbon-like structures of highly disordered carbon of thickness 10-100 nm built from mer...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Fabrication of ordered anodic alumina nanopore arrays and anodization parameters including electroly...
There is an increasing demand for engineered materials that are low cost and efficient for a wide ra...
International audienceHierarchical carbon nanostructures based on ultra-long carbon nanofibers (CNF)...
Hierarchical 1D carbon structures are attractive due to their mechanical, chemical andelectrochemica...
The fabrication and design of carbon-based hierarchical structures with tailored nano-architectures ...
The effect of reaction gas and catalyst on the growth of carbon nanotubes (CNTs) in the anodic alumi...
The fabrication and design of carbon-based hierarchical structures with tailored nano-architectures ...
Hybrid nanostructured arrays based on carbon nanotubes (CNT) and palladium or titanium dioxide mater...
Architectures of 3D hierarchical nanostructure arrays consisting of 1D nanostructures offers a large...
Single-walled and double-walled carbon nanotubes (SWNTs and DWNTs, respectively) possess excellent e...
Carbon nanotube arrays with densities up to 1012 cmÿ2, have been successfully synthesized by pyrolys...
International audienceA novel synthesis pathway is proposed in this work to prepare NiCo nanoalloy e...
This thesis addresses various types of synthetic methods for novel three dimensional nanomaterials a...
Filamentous ribbon-like structures of highly disordered carbon of thickness 10-100 nm built from mer...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
Fabrication of ordered anodic alumina nanopore arrays and anodization parameters including electroly...
There is an increasing demand for engineered materials that are low cost and efficient for a wide ra...