Reorganization Energy of Electron Transfer in Viscous Solvents above the Glass Transition
Author(s) -
Pradip Kumar Ghorai,
Dmitry V. Matyushov
Publication year - 2006
Publication title -
the journal of physical chemistry b
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.864
H-Index - 392
eISSN - 1520-6106
pISSN - 1520-5207
DOI - 10.1021/jp055235h
Subject(s) - glass transition , supercooling , relaxation (psychology) , chemical physics , dielectric , solvent , dipole , chemistry , condensed matter physics , debye , thermodynamics , materials science , molecular physics , polymer , physics , psychology , social psychology , optoelectronics , organic chemistry
We present a molecular-dynamics study of the solvent reorganization energy of electron transfer in supercooled water. We observe a sharp decrease of the reorganization energy at a temperature identified as the temperature of structural arrest due to cage effect as discussed by the mode coupling theory. Both the heat capacity and dielectric susceptibility of the pure water show sharp drops at about the same temperature. This temperature also marks the onset of the enhancement of translational diffusion relative to rotational relaxation signaling the breakdown of the Stokes-Einstein relation. The change in the reorganization energy at the transition temperature reflects the dynamical arrest of the slow, collective relaxation of the solvent related to Debye relaxation of the solvent dipolar polarization.
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