A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt oxide nanoparticles of three different sizes in high yields. It was found that by using sodium nitrite as salt-mediating agent, near-quantitative yields could be obtained. The size of the nanoparticles could be altered from 11 to 22 nm by changing the cobalt concentration and reaction time. These surfactant-free nanoparticles form ideal substrates for facile deposition of further elements such as manganese. The effect of size of the cobalt oxide nanoparticles and the presence of manganese on the reducibility of cobalt oxide to metallic cobalt was investigated. Similarly, the effect of these parameters was investigated with a visible light promo...
© 2015 by the authors Cobalt nanostructures with different size and morphology, i.e., spherical nano...
Surfactant-free, size- and composition-controlled, unsupported, <5-nm, quantum-confined cobalt oxide...
This research work focused on developing new synthetic methods for various metal oxide nanomaterials...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
© The Royal Society of Chemistry 2016. Epsilon cobalt (ε-Co) nanoparticles in a number of octahedral...
Cobalt (II, III) oxide is an inorganic compound with the formula Co3O4. It is a blackantiferromagnet...
A process for the synthesis of cobalt-based nanoparticles is proposed, where standard reducing agent...
Electrolysis of water is key technology, not only for clean energy production, but to ensure a conti...
© 2015 by the authors Cobalt nanostructures with different size and morphology, i.e., spherical nano...
Surfactant-free, size- and composition-controlled, unsupported, <5-nm, quantum-confined cobalt oxide...
This research work focused on developing new synthetic methods for various metal oxide nanomaterials...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
A surfactant-free synthetic route has been developed to produce size-controlled, cube-like cobalt ox...
© The Royal Society of Chemistry 2016. Epsilon cobalt (ε-Co) nanoparticles in a number of octahedral...
Cobalt (II, III) oxide is an inorganic compound with the formula Co3O4. It is a blackantiferromagnet...
A process for the synthesis of cobalt-based nanoparticles is proposed, where standard reducing agent...
Electrolysis of water is key technology, not only for clean energy production, but to ensure a conti...
© 2015 by the authors Cobalt nanostructures with different size and morphology, i.e., spherical nano...
Surfactant-free, size- and composition-controlled, unsupported, <5-nm, quantum-confined cobalt oxide...
This research work focused on developing new synthetic methods for various metal oxide nanomaterials...