The metallic Cu flakes prepared by milling metallic Cu powder were controllably oxidized in air at different temperatures to obtain the Cu-based catalysts containing multicomponents of Cu, Cu2O, and CuO. These catalysts are explored in the Rochow reaction using silicon powder and methyl chloride (MeCl) as reactants to produce dimethyldichlorosilane (M2), which is the most important organosilane monomer in the industry. The samples were characterized by X-ray diffraction, temperature-programmed reduction, thermogravimetric analysis, oxidimetry analysis, particle size analysis, transmission electron microscopy, and scanning electron microscopy. Compared to the metallic Cu powder and Cu flakes, the controllably oxidized Cu flakes containing Cu...
Here we report the first synthesis of nearly pure-phase Cu3Si alloy that can be a highly efficient c...
Here we report the first synthesis of nearly pure-phase Cu3Si alloy that can be a highly efficient c...
In heterogeneous catalysis, on one hand, people always want to know about reaction details, such as ...
This work aims to provide a facile, low-cost and scalable method for the preparation of multicompo...
We report the application of partially reduced CuO nanoparticles as Cu-based catalysts for dimethyld...
In this work, we report a simple and inexpensive approach to synthesize effective multicomponent Cu-...
A series of copper catalysts with a core-shell or tubular structure containing various contents of C...
A series of copper catalysts with a core-shell or tubular structure containing various contents of C...
We report the preparation of Cu2O microparticles with different shapes, by simple hydrolyzation and ...
Porous cubic Cu microparticles were synthesized by a facile solvothermal method using Cu(CH3COO)(2)c...
The oleylamine thermal reduction process was employed to prepare bimetallic copper-silver (CuxAg (...
In heterogeneous catalysis, successful design and construction of the desired oxide-metal interface ...
Abstract. This work presents a novel method for the synthesis of cuprous chloride (CuCl) catalyst. T...
The direct synthesis of dimethyldichlorosilane has been studied for more than 60 years, owing to its...
Mesoporous Cu2O (MP-Cu2O) microspheres were prepared via a facile template-free hydrothermal synthes...
Here we report the first synthesis of nearly pure-phase Cu3Si alloy that can be a highly efficient c...
Here we report the first synthesis of nearly pure-phase Cu3Si alloy that can be a highly efficient c...
In heterogeneous catalysis, on one hand, people always want to know about reaction details, such as ...
This work aims to provide a facile, low-cost and scalable method for the preparation of multicompo...
We report the application of partially reduced CuO nanoparticles as Cu-based catalysts for dimethyld...
In this work, we report a simple and inexpensive approach to synthesize effective multicomponent Cu-...
A series of copper catalysts with a core-shell or tubular structure containing various contents of C...
A series of copper catalysts with a core-shell or tubular structure containing various contents of C...
We report the preparation of Cu2O microparticles with different shapes, by simple hydrolyzation and ...
Porous cubic Cu microparticles were synthesized by a facile solvothermal method using Cu(CH3COO)(2)c...
The oleylamine thermal reduction process was employed to prepare bimetallic copper-silver (CuxAg (...
In heterogeneous catalysis, successful design and construction of the desired oxide-metal interface ...
Abstract. This work presents a novel method for the synthesis of cuprous chloride (CuCl) catalyst. T...
The direct synthesis of dimethyldichlorosilane has been studied for more than 60 years, owing to its...
Mesoporous Cu2O (MP-Cu2O) microspheres were prepared via a facile template-free hydrothermal synthes...
Here we report the first synthesis of nearly pure-phase Cu3Si alloy that can be a highly efficient c...
Here we report the first synthesis of nearly pure-phase Cu3Si alloy that can be a highly efficient c...
In heterogeneous catalysis, on one hand, people always want to know about reaction details, such as ...