Title of article
Role of inertial and non-Markovian effects on activated barrier crossing dynamics for charge transfer reactions in solution Original Research Article
Author/Authors
Alok Samanta، نويسنده , , Amita Wadehra and Swapan K. Ghosh، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2000
Pages
10
From page
39
To page
48
Abstract
Charge transfer processes in a polar solvent, modeled as an activated crossing over a parabolic potential barrier, are studied here through the Grote–Hynes (G–H) theory using the recent microscopic approaches to the dielectric friction based on mode coupling theory. The calculated frequency-dependent friction consisting of the short-range as well as the long-range contributions is used to obtain the barrier crossing rates based on the G–H theory, and for comparison also Kramersʹ theory using the zero-frequency value of the friction. The effect of considering the inertial and non-Markovian motion of the solvent molecules on the calculated friction as well as the barrier crossing rates is investigated. The inertial component of solvent motion is found to be an important factor.
Journal title
Chemical Physics
Serial Year
2000
Journal title
Chemical Physics
Record number
1056636
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