The hydrogenation of hydrogen cyanide to methylamine on Ni(111) has been studied as a model reaction for the hydrogenation of nitriles to primary amines, using density functional theory. Hydrogen cyanide adsorbs strongly on Ni(111) with an adsorption energy of -1.50 eV with the CN bond parallel to the surface. The product of the hydrogenation reaction, methylamine, is relatively weakly adsorbed on the surface compared with the hydrogen cyanide, with an adsorption energy of -0.56 eV, very similar to the adsorption energy of ammonia, -0.41 eV. The hydrogenation reaction goes through an imine intermediate (H2CNH) independently of whether hydrogen reacts with the carbon atom or nitrogen atom of the hydrogen cyanide molecule in the first hydroge...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
The CH4 dissociation on the NiPd(111) surface is studied by using the density functional theory (DFT...
The Horiuti-Polanyi mechanism for ethylene hydrogenation over Pd(111) is examined using first-princi...
The hydrogenation of hydrogen cyanide to methylamine on Ni(111) has been studied as a model reaction...
The hydrogenation of HCN to methylamine on Co(111) was used as a model reaction to study the hydroge...
Density functional theory has been used to gain molecular understanding of various catalytic process...
Hydrogen induced carbon-nitrogen bond activation is a surface process of great importance in catalyt...
N-nitrosodimethylamine (NDMA) reaction with coadsorbed hydrogen on the Ni{1 1 1} surface has been in...
Ammonia can be used to produce carbon-free hydrogen for fuel cells and is considered as a key player...
Context. Hydrogenation reactions dominate grain surface chemistry in dense molecular clouds and lead...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
The possibility of using methylamines instead of ammonia as a nitrogen precursor for the CVD of nitr...
The hydrogenation of triple and double carbon−carbon bonds in C4 molecules containing a single unsat...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
The CH4 dissociation on the NiPd(111) surface is studied by using the density functional theory (DFT...
The Horiuti-Polanyi mechanism for ethylene hydrogenation over Pd(111) is examined using first-princi...
The hydrogenation of hydrogen cyanide to methylamine on Ni(111) has been studied as a model reaction...
The hydrogenation of HCN to methylamine on Co(111) was used as a model reaction to study the hydroge...
Density functional theory has been used to gain molecular understanding of various catalytic process...
Hydrogen induced carbon-nitrogen bond activation is a surface process of great importance in catalyt...
N-nitrosodimethylamine (NDMA) reaction with coadsorbed hydrogen on the Ni{1 1 1} surface has been in...
Ammonia can be used to produce carbon-free hydrogen for fuel cells and is considered as a key player...
Context. Hydrogenation reactions dominate grain surface chemistry in dense molecular clouds and lead...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
The possibility of using methylamines instead of ammonia as a nitrogen precursor for the CVD of nitr...
The hydrogenation of triple and double carbon−carbon bonds in C4 molecules containing a single unsat...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
The CH4 dissociation on the NiPd(111) surface is studied by using the density functional theory (DFT...
The Horiuti-Polanyi mechanism for ethylene hydrogenation over Pd(111) is examined using first-princi...