Repositorio Bibliográfico Biocultural

Somos un mismo pueblo con culturas diversas

Photoelectrochemical removal of chlorfenvinphos by using WO3 nanorods: Influence of annealing temperature and operation p

Photoelectrochemical removal of chlorfenvinphos by using WO3 nanorods: Influence of annealing temperature and operation pH

Photoelectrocatalyzed degradation of a pesticides mixture solution (chlorfenvinphos and bromacil) by WO3 nanosheets

Photoelectrocatalyzed degradation of a pesticides mixture solution (chlorfenvinphos and bromacil) by WO3 nanosheets [EN] A

A pH Study for the Degradation of Acetaminophen with Iron Oxide Nanostructures

A pH Study for the Degradation of Acetaminophen with Iron Oxide Nanostructures [EN] Nowadays, there

Study of the annealing conditions and photoelectrochemical characterization of a new iron oxide bi-layered nanostructure

Study of the annealing conditions and photoelectrochemical characterization of a new iron oxide bi-layered nanostructure

Iron oxide nanostructures for photoelectrochemical applications: Effect of applied potential during Fe anodization

Iron oxide nanostructures for photoelectrochemical applications: Effect of applied potential during Fe anodization [EN] In

Customized WO3 nanoplatelets as visible-light photoelectrocatalyst for the degradation of a recalcitrant model organic co

Customized WO3 nanoplatelets as visible-light photoelectrocatalyst for the degradation of a recalcitrant model organic compound

Long-term properties and end-of-life of polymers from renewable resources

Long-term properties and end-of-life of polymers from renewable resources [EN] The long-term properties and end-of-life

A simple method to fabricate high-performance nanostructured WO3 photocatalysts with adjusted morphology in the presence

A simple method to fabricate high-performance nanostructured WO3 photocatalysts with adjusted morphology in the presence

Influence of electrolyte temperature on the synthesis of iron oxide nanostructures by electrochemical anodization for wat

Influence of electrolyte temperature on the synthesis of iron oxide nanostructures by electrochemical anodization for