Metal–oxide hybrid nanocatalysts with ultrathin oxide encapsulation can be a new platform to test the metal–support interaction. Metal nanoparticles (Ru, Rh, or Pt) capped with polymer/citrate were deposited on functionalized SiO2 and then an ultrathin layer of TiO2 was selectively coated on the SiO2 surface to prevent sintering and to provide high thermal stability while maximizing the metal–oxide interface for higher catalytic activity. Transmission electron microscopy studies confirmed that 2.1–2.3 nm metal nanoparticles were well dispersed and distributed throughout the surface of the 25 nm SiO2 nanoparticles, and that a 2 nm ultrathin TiO2 layer existed on the surface of the particles. The metal nanoparticles were still well exposed to...
Catalyst deactivation is an intriguing issue that has created immense problems not only for the indu...
This article reports a facile and controllable two-step method to construct TiO2-Pt@SiO2 nanocomposi...
We present a rapid approach for forming monodisperse silica microcapsules decorated with metal oxide...
We report the fabrication of metal–oxide (m-oxide) hybrid nanocatalysts with oxide encapsulation (Pt...
The facile synthesis of silica supported platinum nanoparticles with ultrathin titania coating to en...
We report the fabrication of a metal-decorated hybrid nanocomposite with TiO2 encapsulation (Metal/ ...
Gold nanomaterials have been recognized as considerably active and effective catalysts toward severa...
Surface science studies of defect-free, single-crystal model catalysts have provided vital knowledge...
In order to understand heterogeneous catalytic reactions, model catalysts such as a single crystalli...
Recent advances in colloidal synthesis enabled the precise control of the size, shape and compositio...
Ultra-small platinum nanoparticles loaded over titania is a promising catalyst for the low-temperatu...
Noble metal–titanium dioxide nanocomposites (Pt/TiO2, Pd/TiO2 and bimetallic Pt-Pd/TiO2) were synthe...
A catalyst system consisting of core\u2013shell nanostructures with Au core and porous TiO2 shell wa...
Surface chemistry studies of two transition-metal oxides: titanium oxide and iron oxide are presente...
Titanium dioxide is a photocatalyst that has attracted considerable attention for tackling pollution...
Catalyst deactivation is an intriguing issue that has created immense problems not only for the indu...
This article reports a facile and controllable two-step method to construct TiO2-Pt@SiO2 nanocomposi...
We present a rapid approach for forming monodisperse silica microcapsules decorated with metal oxide...
We report the fabrication of metal–oxide (m-oxide) hybrid nanocatalysts with oxide encapsulation (Pt...
The facile synthesis of silica supported platinum nanoparticles with ultrathin titania coating to en...
We report the fabrication of a metal-decorated hybrid nanocomposite with TiO2 encapsulation (Metal/ ...
Gold nanomaterials have been recognized as considerably active and effective catalysts toward severa...
Surface science studies of defect-free, single-crystal model catalysts have provided vital knowledge...
In order to understand heterogeneous catalytic reactions, model catalysts such as a single crystalli...
Recent advances in colloidal synthesis enabled the precise control of the size, shape and compositio...
Ultra-small platinum nanoparticles loaded over titania is a promising catalyst for the low-temperatu...
Noble metal–titanium dioxide nanocomposites (Pt/TiO2, Pd/TiO2 and bimetallic Pt-Pd/TiO2) were synthe...
A catalyst system consisting of core\u2013shell nanostructures with Au core and porous TiO2 shell wa...
Surface chemistry studies of two transition-metal oxides: titanium oxide and iron oxide are presente...
Titanium dioxide is a photocatalyst that has attracted considerable attention for tackling pollution...
Catalyst deactivation is an intriguing issue that has created immense problems not only for the indu...
This article reports a facile and controllable two-step method to construct TiO2-Pt@SiO2 nanocomposi...
We present a rapid approach for forming monodisperse silica microcapsules decorated with metal oxide...