International audienceExperimental observation and time relaxation measurement of the hydrated proton Eigen form [H3 O+ (H2 O)3] are presented here. Vibrational time-resolved spectroscopy is used with an original method of investigating the proton excess in water. The anharmonicity of the time-resolved spectra is characteristic of the Eigen-type proton geometry. Proton relaxation occurs in less than 200 fs. A calculation of the potential energy confirms the experimental result and the Eigen cation lifetime is in good agreement with previous molecular dynamics simulations. Cop. 2007 American Institute of Physics
The following article appeared in Yamada, S. A., Thompson, W. H., & Fayer, M. D. (2017). Water-anion...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2004.MIT Institute Archi...
Photon echo and resonant transient grating experiments on the equilibrated aqueous electron are repo...
International audienceExperimental observation and time relaxation measurement of the hydrated proto...
International audienceWe present here the first measurement of the femtosecond dynamics of protons i...
This work of thesis aims to understand the strong mobility of protons in water. Water is fundamental...
The aqueous proton is one of the fundamental species of aqueous chemistry, but a clear picture of it...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2013.Vita. Cataloged fro...
In a combined experimental and theoretical 2D-IR and pump-probe study we determine how ultrafast sol...
Infrared pump-probe experiments are performed on isolated H2O molecules diluted in acetonitrile in t...
The excess proton (H+) in aqueous environment, elusive in its structure and local surrounding, has b...
Aqueous proton transport involves the ultrafast interconversion of hydrated proton species that are ...
We have studied the influence of excess protons on the vibrational energy relaxation of the O-H and ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2005.Vita.Includes bibli...
Paper presented at the Sixteenth International Conference on Ultrafast Phenomena.We use peakshift, t...
The following article appeared in Yamada, S. A., Thompson, W. H., & Fayer, M. D. (2017). Water-anion...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2004.MIT Institute Archi...
Photon echo and resonant transient grating experiments on the equilibrated aqueous electron are repo...
International audienceExperimental observation and time relaxation measurement of the hydrated proto...
International audienceWe present here the first measurement of the femtosecond dynamics of protons i...
This work of thesis aims to understand the strong mobility of protons in water. Water is fundamental...
The aqueous proton is one of the fundamental species of aqueous chemistry, but a clear picture of it...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2013.Vita. Cataloged fro...
In a combined experimental and theoretical 2D-IR and pump-probe study we determine how ultrafast sol...
Infrared pump-probe experiments are performed on isolated H2O molecules diluted in acetonitrile in t...
The excess proton (H+) in aqueous environment, elusive in its structure and local surrounding, has b...
Aqueous proton transport involves the ultrafast interconversion of hydrated proton species that are ...
We have studied the influence of excess protons on the vibrational energy relaxation of the O-H and ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2005.Vita.Includes bibli...
Paper presented at the Sixteenth International Conference on Ultrafast Phenomena.We use peakshift, t...
The following article appeared in Yamada, S. A., Thompson, W. H., & Fayer, M. D. (2017). Water-anion...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2004.MIT Institute Archi...
Photon echo and resonant transient grating experiments on the equilibrated aqueous electron are repo...