The oxychlorination of ethylene is an industrially relevant process within the manufacture of polyvinyl chloride (PVC). Although RuO2 is the best performing catalyst for the Deacon process (4HCl + O2? 2H2O + 2Cl2), experiments demonstrate a modest activity in the selective oxychlorination to vinyl chloride, favouring oxidation and polychlorinated saturated products. From the computational modelling three main contributions are found to control the performance: (i) coverage effects that alter the configuration of intermediates; (ii) the monodimensional arrangement of the active sites, in which the reaction of coadsorbed species works on a ‘‘first-come, first-served” basis; and (iii) the high reactivity of the oxygen species. Competition betw...
Catalytic HBr oxidation is an integral step in the bromine-mediated functionalisation of alkanes to ...
Propylene epoxidation reaction was investigated on catalytic surfaces of chlorinated copper(I) oxide...
Today ethylene oxide can be produced industrially with ~90 % selectivity through the epoxidation of ...
Polyvinyl chloride (PVC) is the third most widely used plastic in today’s society. The industrial pr...
Ethylene oxychlorination is the key technology in vinyl chloride (VCM, the monomer of PVC, polyvinyl...
Doped CuCl2/Alumina is the catalyst for ethylene dichloride (C2H4CL2) production. Ethylene dichlorid...
The main aim of this Ph.D. project was to study, understand and improve the current knowledge on the...
Two heterogeneous catalysts, the Phillips ethylene polymerization catalyst and supported rhenium ole...
We use density functional theory (DFT) calculations to study a novel Deacon-like process over pure R...
Ethylene oxychlorination on CeO2 provides ethylene dichloride (EDC) and the desired vinyl chloride (...
AbstractRationally designed RuO2-based Deacon catalysts can contribute to massive energy saving comp...
In the context of vinyl chloride monomer (VCM) production, an oxychlorination catalyst that allows d...
International audienceIn electrochemical promotion of catalysis (EPOC), the adsorption energies of r...
Rationally designed RuO2-based Deacon catalysts can contribute to massive energy saving compared to ...
CuCl2/Al2O3 based ethylene oxychlorination catalysts have been characterized by using IR spectroscop...
Catalytic HBr oxidation is an integral step in the bromine-mediated functionalisation of alkanes to ...
Propylene epoxidation reaction was investigated on catalytic surfaces of chlorinated copper(I) oxide...
Today ethylene oxide can be produced industrially with ~90 % selectivity through the epoxidation of ...
Polyvinyl chloride (PVC) is the third most widely used plastic in today’s society. The industrial pr...
Ethylene oxychlorination is the key technology in vinyl chloride (VCM, the monomer of PVC, polyvinyl...
Doped CuCl2/Alumina is the catalyst for ethylene dichloride (C2H4CL2) production. Ethylene dichlorid...
The main aim of this Ph.D. project was to study, understand and improve the current knowledge on the...
Two heterogeneous catalysts, the Phillips ethylene polymerization catalyst and supported rhenium ole...
We use density functional theory (DFT) calculations to study a novel Deacon-like process over pure R...
Ethylene oxychlorination on CeO2 provides ethylene dichloride (EDC) and the desired vinyl chloride (...
AbstractRationally designed RuO2-based Deacon catalysts can contribute to massive energy saving comp...
In the context of vinyl chloride monomer (VCM) production, an oxychlorination catalyst that allows d...
International audienceIn electrochemical promotion of catalysis (EPOC), the adsorption energies of r...
Rationally designed RuO2-based Deacon catalysts can contribute to massive energy saving compared to ...
CuCl2/Al2O3 based ethylene oxychlorination catalysts have been characterized by using IR spectroscop...
Catalytic HBr oxidation is an integral step in the bromine-mediated functionalisation of alkanes to ...
Propylene epoxidation reaction was investigated on catalytic surfaces of chlorinated copper(I) oxide...
Today ethylene oxide can be produced industrially with ~90 % selectivity through the epoxidation of ...