The adsorption and hydrogenation of acrolein on the Ag(111) surface has been investigated by high resolution synchrotron XPS, NEXAFS, and temperature programmed reaction. The molecule adsorbs intact at all coverages and its adsorption geometry is critically important in determining chemoselectivity toward the formation of allyl alcohol, the desired but thermodynamically disfavored product. In the absence of hydrogen adatoms (H(a)), acrolein lies almost parallel to the metal surface; high coverages force the C=C bond to tilt markedly, likely rendering it less vulnerable toward reaction with hydrogen adatoms. Reaction with coadsorbed H(a) yields allyl alcohol, propionaldehyde, and propanol, consistent with the behavior of practical dispersed ...
Atomistic-level understanding of the interaction of α,β-unsaturated aldehydes and their derivatives ...
The mechanistic understanding and control over transformations of multi-unsaturated hydrocarbons on ...
Acrolein hydrogenation via allyl alcohol, propanal, and enol into propanol on the Ni(111) surface ha...
The gas-phase hydrogenation of acrolein over silver was studied in a broad pressure range from not, ...
The gas-phase hydrogenation of acrolein over silver was studied in a broad pressure range from ∼2 mb...
The hydrogenation of acrolein over pure and supported silver has been investigated with a focus on t...
The gas phase hydrogenation of acrolein over 7.5% Ag/SiO2 has been studied in a broad pressure range...
The gas phase hydrogenation of acrolein over supported silver catalysts has been investigated with a...
The aim of this course of research was to further our knowledge of the mechanism of catalysts at the...
A highly active, chemoselective and environmentally friendly Ag-In catalyst which enables the extrem...
Supported silver catalysts exhibit a remarkably high selectivity in the industrially important hydro...
The hydrogenation of acrolein has been studied over various Ag/SiO2 catalysts in a pressure range fr...
Introduction In recent time, increasing effort has been undertaken in order to answer the question, ...
Identifying the surface processes governing the selectivity in hydrogenation of α,β-unsaturated carb...
ABSTRACT: We present a mechanistic study on selective hydrogenation of acrolein over model Pd surfac...
Atomistic-level understanding of the interaction of α,β-unsaturated aldehydes and their derivatives ...
The mechanistic understanding and control over transformations of multi-unsaturated hydrocarbons on ...
Acrolein hydrogenation via allyl alcohol, propanal, and enol into propanol on the Ni(111) surface ha...
The gas-phase hydrogenation of acrolein over silver was studied in a broad pressure range from not, ...
The gas-phase hydrogenation of acrolein over silver was studied in a broad pressure range from ∼2 mb...
The hydrogenation of acrolein over pure and supported silver has been investigated with a focus on t...
The gas phase hydrogenation of acrolein over 7.5% Ag/SiO2 has been studied in a broad pressure range...
The gas phase hydrogenation of acrolein over supported silver catalysts has been investigated with a...
The aim of this course of research was to further our knowledge of the mechanism of catalysts at the...
A highly active, chemoselective and environmentally friendly Ag-In catalyst which enables the extrem...
Supported silver catalysts exhibit a remarkably high selectivity in the industrially important hydro...
The hydrogenation of acrolein has been studied over various Ag/SiO2 catalysts in a pressure range fr...
Introduction In recent time, increasing effort has been undertaken in order to answer the question, ...
Identifying the surface processes governing the selectivity in hydrogenation of α,β-unsaturated carb...
ABSTRACT: We present a mechanistic study on selective hydrogenation of acrolein over model Pd surfac...
Atomistic-level understanding of the interaction of α,β-unsaturated aldehydes and their derivatives ...
The mechanistic understanding and control over transformations of multi-unsaturated hydrocarbons on ...
Acrolein hydrogenation via allyl alcohol, propanal, and enol into propanol on the Ni(111) surface ha...