By including relevant physical properties in our modeling of a surface adsorbate system we can, from first principles, correctly calculate all experimentally observed features in the vibrational spectrum of CH3CH2O– and CD3CH2O– adsorbed on Cu(100). That is, we reproduce the number of observed modes, the vibrational frequencies, and intensities of the modes including the presence/absence of binary overtone and combination modes. No scaling was performed. Our calculations show that the anharmonic terms of the potential energy surface of free ethanol are transferrable to the corresponding surface adsorbate, ethoxy, while the harmonic terms are not. ©2003 The American Physical Societ
We have computationally studied adsorption and vibrational energy levels of the ammonia molecule ads...
Vibrational spectroscopy is a powerful tool to identify molecules and to characterise their chemical...
In this study, we present a thorough benchmarking of our direct anharmonic vibrational variation-per...
A methodology for the calculation of anharmonic vibrational frequencies of adsorbates on surfaces is...
We present a new method for calculating the frequencies and intensities of the vibrational modes of ...
We suggest a novel method for systematic improvement of anharmonic adsorbate frequencies based on a ...
Using surface infrared absorption spectroscopy, we have measured and assigned the vibrational spectr...
Molecular adsorption on solid surfaces and how the molecular vibrational properties are affected by ...
The vibrational properties of the CO/Cu(100) surface adsorbate system have been explored by infrared...
The anharmonic properties of a surface intermediate, methoxy, adsorbed on Cu(100) are investigated b...
The subtle interplay of several different effects makes the interpretation and analysis of experimen...
Funding: Scottish Funding Council (through EaStCHEM and SRD-Grant HR07003) and from EPSRC (PhD stude...
In the present work we determine the adsorption site of two polyatomic molecules, methoxy and ethoxy...
Density functional theory (DFT) calculations are performed to study the ethanol adsorption on Rh(111...
This thesis investigates accurate theoretical prediction of anharmonic vibrational frequencies of mo...
We have computationally studied adsorption and vibrational energy levels of the ammonia molecule ads...
Vibrational spectroscopy is a powerful tool to identify molecules and to characterise their chemical...
In this study, we present a thorough benchmarking of our direct anharmonic vibrational variation-per...
A methodology for the calculation of anharmonic vibrational frequencies of adsorbates on surfaces is...
We present a new method for calculating the frequencies and intensities of the vibrational modes of ...
We suggest a novel method for systematic improvement of anharmonic adsorbate frequencies based on a ...
Using surface infrared absorption spectroscopy, we have measured and assigned the vibrational spectr...
Molecular adsorption on solid surfaces and how the molecular vibrational properties are affected by ...
The vibrational properties of the CO/Cu(100) surface adsorbate system have been explored by infrared...
The anharmonic properties of a surface intermediate, methoxy, adsorbed on Cu(100) are investigated b...
The subtle interplay of several different effects makes the interpretation and analysis of experimen...
Funding: Scottish Funding Council (through EaStCHEM and SRD-Grant HR07003) and from EPSRC (PhD stude...
In the present work we determine the adsorption site of two polyatomic molecules, methoxy and ethoxy...
Density functional theory (DFT) calculations are performed to study the ethanol adsorption on Rh(111...
This thesis investigates accurate theoretical prediction of anharmonic vibrational frequencies of mo...
We have computationally studied adsorption and vibrational energy levels of the ammonia molecule ads...
Vibrational spectroscopy is a powerful tool to identify molecules and to characterise their chemical...
In this study, we present a thorough benchmarking of our direct anharmonic vibrational variation-per...