FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templates and investigated by electron microscopy, x-ray diffraction, and superconducting quantum interference device magnetometry. Loading the templates with an Fe chloride and Pt chloride mixture, followed by hydrogen reduction at 560 °C, leads to the formation of ferromagnetic FePt nanotubes in the alumina pores. An Fe nitrate solution, thermally decomposed at 250 °C and reduced in hydrogen for 2.5 h at the same temperature, yields Fe3O4 tubes. The versatility of the method indicates that materials with a wide range of parameters can be produced
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templa...
FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templa...
FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templa...
Nanochannels of porous alumina films were used as nanoreactors for the reaction of hydrogen gas with...
Nanochannels of porous alumina films were used as nanoreactors for the reaction of hydrogen gas with...
Nanochannels of porous alumina films were used as nanoreactors for the reaction of hydrogen gas with...
Highly ordered spinel ferriteMxFe3_xO4 (M ¼ Ni, Co, Zn) nanotube arrays were synthesized in anodic a...
We utilize porous alumina membranes as templates in which mild and hard anodizations are combined to...
FePt L10-structured clusters were synthesized by hydrogen reduction of Fe(NO3)3•9H2O and H2PtCl6•6H2...
Hollow nanostructures based on the Fe100–xCox alloy were synthesized in the pores of polymer templat...
Current models for magnetoviscosity suggest that replacing the spherical nanoparticles of a conventi...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templa...
FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templa...
FePt and Fe3O4 nanotubes are produced by hydrogen reduction in nanochannels of porous alumina templa...
Nanochannels of porous alumina films were used as nanoreactors for the reaction of hydrogen gas with...
Nanochannels of porous alumina films were used as nanoreactors for the reaction of hydrogen gas with...
Nanochannels of porous alumina films were used as nanoreactors for the reaction of hydrogen gas with...
Highly ordered spinel ferriteMxFe3_xO4 (M ¼ Ni, Co, Zn) nanotube arrays were synthesized in anodic a...
We utilize porous alumina membranes as templates in which mild and hard anodizations are combined to...
FePt L10-structured clusters were synthesized by hydrogen reduction of Fe(NO3)3•9H2O and H2PtCl6•6H2...
Hollow nanostructures based on the Fe100–xCox alloy were synthesized in the pores of polymer templat...
Current models for magnetoviscosity suggest that replacing the spherical nanoparticles of a conventi...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...
© 2016 American Chemical Society. We present a simple synthesis of iron oxide nanotubes, grown under...