Ketene, a versatile reagent in production of fine and specialty chemicals, is produced from acetic acid. We investigate the synthesis of ketene from acetic acid over the (3,0;1,1) surface of Cu2O(100) through analysis of the adsorption and desorption characteristics of formic and acetic acids. The results allow us to establish a reaction mechanism for ketene formation. Observations from x-ray photoelectron spectroscopy (XPS), scanning tunneling microscopy, and temperature programmed desorption (TPD), supported by a comparison with formic acid results, suggest that acetic acid reacts with Cu2O through deprotonation to form acetate species coordinated to copper sites and hydroxylation of nearby surface oxygen sites. For formic acid the decomp...
Four cluster models for a copper(I)oxide (111) surface have been designed, of which three were studi...
Formic acid can undergo dehydration or dehydrogenation with variable selectivity over a range of met...
With the emergence of methods for computing rate constants for elementary reaction steps of catalyti...
Ketene, a versatile reagent in production of fine and specialty chemicals, is produced from acetic a...
AbstractPeriodic, self-consistent, density functional theory calculations with corrections via a Hub...
Periodic, self-consistent, density functional theory calculations with corrections via a Hubbard U p...
The adsorption and reaction of formic acid with oxygen on Cu(1 1 0) has been studied using TPD (temp...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Formic acid is an important molecule, due to its potential for hydrogen storage and the role of form...
A comprehensive, coverage-dependent mean-field microkinetic model is developed for the hydrogenation...
The hydrolysis of ketene (H<sub>2</sub>CCO) to form acetic acid involving two water molecules and ...
The reaction mechanism of the CH3OH synthesis by the hydrogenation of CO2 on Cu catalysts is unclear...
The decoration of a copper cluster on the anatase phase of a (101)-TiO2 surface to increase the redu...
This study examines the reaction pathways for the selective conversion of CO2 to formate on the surf...
The reaction of aliphatic carboxylic acids over oxidic catalysts\u3cbr/\u3ehas been studied. Ketones...
Four cluster models for a copper(I)oxide (111) surface have been designed, of which three were studi...
Formic acid can undergo dehydration or dehydrogenation with variable selectivity over a range of met...
With the emergence of methods for computing rate constants for elementary reaction steps of catalyti...
Ketene, a versatile reagent in production of fine and specialty chemicals, is produced from acetic a...
AbstractPeriodic, self-consistent, density functional theory calculations with corrections via a Hub...
Periodic, self-consistent, density functional theory calculations with corrections via a Hubbard U p...
The adsorption and reaction of formic acid with oxygen on Cu(1 1 0) has been studied using TPD (temp...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Formic acid is an important molecule, due to its potential for hydrogen storage and the role of form...
A comprehensive, coverage-dependent mean-field microkinetic model is developed for the hydrogenation...
The hydrolysis of ketene (H<sub>2</sub>CCO) to form acetic acid involving two water molecules and ...
The reaction mechanism of the CH3OH synthesis by the hydrogenation of CO2 on Cu catalysts is unclear...
The decoration of a copper cluster on the anatase phase of a (101)-TiO2 surface to increase the redu...
This study examines the reaction pathways for the selective conversion of CO2 to formate on the surf...
The reaction of aliphatic carboxylic acids over oxidic catalysts\u3cbr/\u3ehas been studied. Ketones...
Four cluster models for a copper(I)oxide (111) surface have been designed, of which three were studi...
Formic acid can undergo dehydration or dehydrogenation with variable selectivity over a range of met...
With the emergence of methods for computing rate constants for elementary reaction steps of catalyti...