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TiO2 films organofunctionalized with 2-aminothiazole ligand and adsorbed Pd(II) ions applied in the photocatalytic degradation of phenol in an aqueous medium
(Elsevier B.V., 2007-05-07)
This paper describes the preparation of thin titanium films via sol-gel route and their subsequent chemical modification by anchoring with 2-aminothiazole ligand and Pd(II) ion sorption, aiming to maximize the photocatalytic ...
TiO2 films organofunctionalized with 2-aminothiazole ligand and adsorbed Pd(II) ions applied in the photocatalytic degradation of phenol in an aqueous medium
(Elsevier B.V., 2007-05-07)
This paper describes the preparation of thin titanium films via sol-gel route and their subsequent chemical modification by anchoring with 2-aminothiazole ligand and Pd(II) ion sorption, aiming to maximize the photocatalytic ...
Hydrogen effects on the mechanical properties of nanocrystalline free-standing Palladium thin films
(Pergamon-Elsevier Science Ltd, 2020-05)
Pd membranes are used both in hydrogen detection and hydrogen separation devices. Their properties can be improved at the nanometer scale. We simulate atomistically the tensile properties of Pd mono and polycrystalline ...
Metallophosphazene Precursor Routes to the Solid-State Deposition of Metallic and Dielectric Microstructures and Nanostructures on Si and SiO(2)
(AMER CHEMICAL SOC, 2010-09-04)
We present a method for the preparation and deposition of metallic microstructures and nanostructures deposited on
silicon and silica surfaces by pyrolysis in air at 800 C of the corresponding metallophosphazene (cyclic ...
Surface composition and structure of palladium ultra-thin films deposited on Ni(111)
(Elsevier Science BvAmsterdamHolanda, 2006)
Pd Nucleation and Growth Mechanism Deposited on Different Substrates
(Elsevier, 2015-08)
Palladium, has an unique property between the noble metals, that is the higher capacity to adsorb onto the surface, and within its network, the hydrogen, resulting the Pd of crucial importance to many industrial processes ...
Pd growth on Cu(111): stress relaxation through surface alloying?
(Elsevier Science BvAmsterdamHolanda, 2004)