Methanol decomposition on metals has been subject of several theoretical studies, usually concentrating on a particular set of reactions in the main reaction path. In this work, we present an extensive study that considers all potential elementary steps for four close-packed surfaces including Cu, Ru, Pt, and Pd that shows the different behaviors and alternative routes through which the decomposition can take place by theoretical methods, including dispersion contributions. Decomposition follows different paths on these metals; while Cu would produce CH<sub>2</sub>O, CO is the major product for the other metals. In addition, coverage effects might change the first step in Pt and Ru from methylenic to alcohol H activation. Alternatively the ...
To design new catalysts that meet the environmental, materials and energy concerns of modern society...
Solvation is crucial in many chemical and electrochemical processes related to alcohol conversion on...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Methanol decomposition on metals has been subject of several theoretical studies, usually concentrat...
Methanol decomposition is one of the key reactions in direct methanol fuel cell (DMFC) state-of-the-...
We present a model of the surface kinetics of the dehydrogenation reaction of methanol on the Pd(111...
Using first principles quantum mechanics [nonlocal density functional theory (B3LYP)], we calculated...
We present a model of the surface kinetics of the dehydrogenation reaction of methanol on the Pd(111...
An important industrial process is methanol steam reforming, which is typically used in conjunction ...
This work reports the detailed mechanism of methanol decomposition on Pt<sub>3</sub>Ni(111) based o...
A theoretical microkinetic model is developed to describe the decomposition of methanol into formald...
The microscopic reaction mechanism for methanol oxidation on Au(1 1 1) surface has been thoroughly i...
Methanol steam reforming (MSR) is an important industrial process for hydrogen production, and funda...
In this research kinetic modeling and first principles study of the water-gas shift (WGS) and methan...
Methanol serves as energy carrier in direct methanol fuel cells. The decomposition pathways of metha...
To design new catalysts that meet the environmental, materials and energy concerns of modern society...
Solvation is crucial in many chemical and electrochemical processes related to alcohol conversion on...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
Methanol decomposition on metals has been subject of several theoretical studies, usually concentrat...
Methanol decomposition is one of the key reactions in direct methanol fuel cell (DMFC) state-of-the-...
We present a model of the surface kinetics of the dehydrogenation reaction of methanol on the Pd(111...
Using first principles quantum mechanics [nonlocal density functional theory (B3LYP)], we calculated...
We present a model of the surface kinetics of the dehydrogenation reaction of methanol on the Pd(111...
An important industrial process is methanol steam reforming, which is typically used in conjunction ...
This work reports the detailed mechanism of methanol decomposition on Pt<sub>3</sub>Ni(111) based o...
A theoretical microkinetic model is developed to describe the decomposition of methanol into formald...
The microscopic reaction mechanism for methanol oxidation on Au(1 1 1) surface has been thoroughly i...
Methanol steam reforming (MSR) is an important industrial process for hydrogen production, and funda...
In this research kinetic modeling and first principles study of the water-gas shift (WGS) and methan...
Methanol serves as energy carrier in direct methanol fuel cells. The decomposition pathways of metha...
To design new catalysts that meet the environmental, materials and energy concerns of modern society...
Solvation is crucial in many chemical and electrochemical processes related to alcohol conversion on...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...