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Ultrafast Hydrogen Bonding Dynamics and Proton Transfer Prosesses in the Condensed Phase

✍ Scribed by Thomas Elsaesser, Huib J. Bakker (auth.), Thomas Elsaesser, Huib J. Bakker (eds.)


Publisher
Springer Netherlands
Year
2002
Tongue
English
Leaves
192
Series
Understanding Chemical Reactivity 23
Edition
1
Category
Library

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✦ Synopsis


Hydrogen bonds represent type of molecular interaction that determines the structure and function of a large variety of molecular systems. The elementary dynamics of hydrogen bonds and related proton transfer reactions, both occurring in the ultra fast time domain between 10-14 and 10-11s, form a research topic of high current interest.
In this book addressing scientists and graduate students in physics, chemistry and biology, the ultra fast dynamics of hydrogen bonds and proton transfer in the condensed phase are reviewed by leading scientists, documenting the state of the art in this exciting field from the viewpoint of theory and experiment. The nonequilibrium behavior of hydrogen-bonded liquids and intramolecular hydrogen bonds as well as photo induced hydrogen and proton transfer are covered in 7 chapters, making reference to the most recent literature.

✦ Table of Contents


Front Matter....Pages i-vii
Ultrafast Dynamics of Hydrogen Bonding and Proton Transfer in the Condensed Phase....Pages 1-4
Infra-Red Spectra of Hydrogen Bonded Systems: Theory and Experiment....Pages 5-30
Femtosecond Mid-Infrared Spectroscopy of Water....Pages 31-72
Proton Transfer Reactions and Hydrogen Bonding in Solution....Pages 73-92
AB Initio Reaction Paths and Potential-Energy Functions for Excited-State Intra- and Intermolecular Hydrogen-Transfer Processes....Pages 93-118
Ultrafast Excited State Hydrogen Transfer in the Condensed Phase....Pages 119-153
Proton Dissociation and Solute-Solvent Interactions Following Electronic Excitation of Photoacids....Pages 155-184
Back Matter....Pages 185-186

✦ Subjects


Physical Chemistry;Atomic, Molecular, Optical and Plasma Physics;Optics, Optoelectronics, Plasmonics and Optical Devices


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