The catalytic oxidation of HCl by molecular oxygen (Deacon process) over ceria allows the recovery of molecular chlorine from the omnipresent HCl waste produced in various industrial processes. In previous density functional theory (DFT) model-calculations by Amrute et al. [J. Catal. 2012, 286, 287−297.], it was proposed that the most critical reaction step in this process is the displacement of tightly bound chlorine at a vacant oxygen position on the CeO2(111) surface (Clvac) toward a less strongly bound cerium on-top (Cltop) position. This step is highly endothermic by more than 2 eV. On the basis of a dedicated model study, namely the reoxidation of a chlorinated single-crystalline Clvac-CeO2–x(111)-(3 × 3)R30° surface structure, we pr...
Bulk CeO<sub>2</sub> has been recently reported as a promising catalyst for the oxidation of HCl to ...
We study substitutional fluorine, chlorine and bromine impurities at CeO2(111), and their effects on...
Reversible oxygen release makes ceria (CeO2) among the most efficient oxide supports for low-tempera...
The catalytic oxidation of HCl by molecular oxygen (Deacon process) over ceria allows the recovery o...
Experimental and theoretical studies reveal performance descriptors and provide molecular-level unde...
Deactivation of CeO2‐based catalysts in the HCl oxidation reaction proceeds via selective bulk chlor...
Cl species transformation and deactivation effects on ceria (111) model catalysts were investigated ...
In situ (operando) investigations aim at establishing structure-function and/or coverage-reactivity ...
Chlorinated volatile organic compounds (CVOCs) are toxic chemical entities emitted invariably from s...
Ethylene oxychlorination on CeO2 provides ethylene dichloride (EDC) and the desired vinyl chloride (...
Chlorinated volatile organic compounds (Cl-VOCs) are toxic materials that are emitted from any fuel ...
An improved fundamental understanding of active site structures can unlock opportunities for catalys...
Surface chlorinated CeO<sub>2</sub> is an efficient material for HCl oxidation, which raises the que...
Periodic density functional theory (DFT) calculations using the hybrid PBE0 functional and atom-cent...
High-resolution core-level shift spectroscopy and temperature-programmed reaction experiments togeth...
Bulk CeO<sub>2</sub> has been recently reported as a promising catalyst for the oxidation of HCl to ...
We study substitutional fluorine, chlorine and bromine impurities at CeO2(111), and their effects on...
Reversible oxygen release makes ceria (CeO2) among the most efficient oxide supports for low-tempera...
The catalytic oxidation of HCl by molecular oxygen (Deacon process) over ceria allows the recovery o...
Experimental and theoretical studies reveal performance descriptors and provide molecular-level unde...
Deactivation of CeO2‐based catalysts in the HCl oxidation reaction proceeds via selective bulk chlor...
Cl species transformation and deactivation effects on ceria (111) model catalysts were investigated ...
In situ (operando) investigations aim at establishing structure-function and/or coverage-reactivity ...
Chlorinated volatile organic compounds (CVOCs) are toxic chemical entities emitted invariably from s...
Ethylene oxychlorination on CeO2 provides ethylene dichloride (EDC) and the desired vinyl chloride (...
Chlorinated volatile organic compounds (Cl-VOCs) are toxic materials that are emitted from any fuel ...
An improved fundamental understanding of active site structures can unlock opportunities for catalys...
Surface chlorinated CeO<sub>2</sub> is an efficient material for HCl oxidation, which raises the que...
Periodic density functional theory (DFT) calculations using the hybrid PBE0 functional and atom-cent...
High-resolution core-level shift spectroscopy and temperature-programmed reaction experiments togeth...
Bulk CeO<sub>2</sub> has been recently reported as a promising catalyst for the oxidation of HCl to ...
We study substitutional fluorine, chlorine and bromine impurities at CeO2(111), and their effects on...
Reversible oxygen release makes ceria (CeO2) among the most efficient oxide supports for low-tempera...