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Titlebook: Ultrafast Dynamics of Chemical Systems; John D. Simon Book 1994 Springer Science+Business Media Dordrecht 1994 Ion.chemistry.cluster.diffu

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楼主: 刘兴旺
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Book 1994ave had a tremendous impact on the field of chemical dynamics. Fundamental questions concerning chemical reactions, once thought to be unaddressable, are now easily studied in real-time experiments. Ultrafast spectroscopies are currently being used to study a variety of fundamental chemical phenomen
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The Molecular Basis of Solvent Caging,s. Thus, ultrafast laser technology provides an outstanding tool for the study of condensed phase reaction dynamics. With ultrafast laser techniques, it will be possible to unveil the fundamental principles of condensed phase reactivity, including a detailed picture of reactive energy flow and the microscopic basis for dissociation quantum yields.
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Chemistry in Clusters: Solvation at the Single Molecule Level,rmediate between gas phase and condensed phase properties. The impetus to cluster research is driven largely by the potential to learn about the correspondence between these conventional phases of matter and the hope that some unforeseen molecular level properties of the condensed phase will be revealed in the cluster environment.
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Charge Transfer Reactions and Solvation Dynamics,. →, .. + dipolar isomerizations, and (with a certain elasticity of definition) ion pair interconversion. Here the solvation dynamics act to influence the motion of the reacting solute nuclear coordinate(s), and thus to influence the reaction rate. The primary reactive coordinate is a nuclear coordinate of the solute.
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Introduction to Ultrafast Laser Spectroscopic Techniques Used in the Investigation of Condensed Phaulation. Only with the development of picosecond and femtosecond laser technology has direct, real-time studies of the ultrafast dynamic processes in condensed phase become possible [.]. These light sources are used in a variety of clever ways to probe chemical dynamics.
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Electron Transfer in Solution: Theory and Experiment, photoinduced ions and limits chemical yields. Therefore, understanding phenomena which influence back transfer is not only an important basic problem, but is a problem of considerable practical significance.
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