Novel urchin-like FeCo oxide nanostructures supported carbon spheres as a highly sensitive sensor for hydrazine sensing application.
Nguyen, D M
Novel urchin-like FeCo oxide nanostructures supported carbon spheres as a highly sensitive sensor for hydrazine sensing application. [electronic resource] - Journal of pharmaceutical and biomedical analysis Aug 2019 - 243-252 p. digital
Publication Type: Journal Article
1873-264X
10.1016/j.jpba.2019.04.008 doi
Carbon--chemistry
Carbonates--chemistry
Cobalt--chemistry
Electrochemical Techniques--methods
Electrodes
Ferric Compounds--chemistry
Hydrazines--chemistry
Hydroxides--chemistry
Limit of Detection
Metal Nanoparticles--chemistry
Nanostructures--chemistry
Oxidation-Reduction
Oxides--chemistry
Novel urchin-like FeCo oxide nanostructures supported carbon spheres as a highly sensitive sensor for hydrazine sensing application. [electronic resource] - Journal of pharmaceutical and biomedical analysis Aug 2019 - 243-252 p. digital
Publication Type: Journal Article
1873-264X
10.1016/j.jpba.2019.04.008 doi
Carbon--chemistry
Carbonates--chemistry
Cobalt--chemistry
Electrochemical Techniques--methods
Electrodes
Ferric Compounds--chemistry
Hydrazines--chemistry
Hydroxides--chemistry
Limit of Detection
Metal Nanoparticles--chemistry
Nanostructures--chemistry
Oxidation-Reduction
Oxides--chemistry