A novel type of surface vibrational sum-frequency generation spectroscopy is presented that enables a highly specific measurement of the coupling of molecules on surfaces. With this doubly vibrationally resonant technique, two-dimensional vibrational spectroscopy of molecules on surfaces becomes possible. The technique is demonstrated for the C-O stretch vibration of CO on a ruthenium (001) surface. It allows for the determination of the intermolecular coupling strength of dipole-coupled CO molecules on the surface
Using time-resolved sum-frequency generation spectroscopy, the C-O stretch vibration of carbon monox...
Heterodyne 2D sum frequency generation spectroscopy is used to study a model CO<sub>2</sub> reductio...
We have studied the vibrational properties of CO adsorbed on platinum and platinum-ruthenium surface...
A novel type of surface vibrational sum-frequency generation spectroscopy is presented that enables ...
A doubly vibrationally resonant technique-infrared-infrared-visible sum-frequency generation spectro...
We present an experimental and theoretical investigation into the coupling of C-O stretch vibrations...
International audienceInfrared Àvisible sum-frequency generation (SFG) vibrational spectroscopy is a...
We report the experimental observation of the gradual transition from a local oscillator to a two-di...
Sum frequency generation (SFG) vibrational spectroscopy has been established as one of the most esse...
During the past decade vibrational sum frequency generation as a method to study interfaces has matu...
Heterodyne 2D sum frequency generation spectroscopy is used to study a model CO2 reduction catalyst,...
2013-06-28Surface-selective vibrational sum frequency generation spectroscopy (SFG) has been used to...
We present an experimental and theoretical study of vibrational excitation of the C–O stretch vibrat...
Infrared-visible sum-frequency generation is the only available technique that can generate surface ...
A mechanistic understanding of the surface femtochemistry leading to the formation of hydrogen and t...
Using time-resolved sum-frequency generation spectroscopy, the C-O stretch vibration of carbon monox...
Heterodyne 2D sum frequency generation spectroscopy is used to study a model CO<sub>2</sub> reductio...
We have studied the vibrational properties of CO adsorbed on platinum and platinum-ruthenium surface...
A novel type of surface vibrational sum-frequency generation spectroscopy is presented that enables ...
A doubly vibrationally resonant technique-infrared-infrared-visible sum-frequency generation spectro...
We present an experimental and theoretical investigation into the coupling of C-O stretch vibrations...
International audienceInfrared Àvisible sum-frequency generation (SFG) vibrational spectroscopy is a...
We report the experimental observation of the gradual transition from a local oscillator to a two-di...
Sum frequency generation (SFG) vibrational spectroscopy has been established as one of the most esse...
During the past decade vibrational sum frequency generation as a method to study interfaces has matu...
Heterodyne 2D sum frequency generation spectroscopy is used to study a model CO2 reduction catalyst,...
2013-06-28Surface-selective vibrational sum frequency generation spectroscopy (SFG) has been used to...
We present an experimental and theoretical study of vibrational excitation of the C–O stretch vibrat...
Infrared-visible sum-frequency generation is the only available technique that can generate surface ...
A mechanistic understanding of the surface femtochemistry leading to the formation of hydrogen and t...
Using time-resolved sum-frequency generation spectroscopy, the C-O stretch vibration of carbon monox...
Heterodyne 2D sum frequency generation spectroscopy is used to study a model CO<sub>2</sub> reductio...
We have studied the vibrational properties of CO adsorbed on platinum and platinum-ruthenium surface...