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Homolytic versus Heterolytic Dissociation of Alkalimetal Halides: The Effect of Microsolvation

Title
Homolytic versus Heterolytic Dissociation of Alkalimetal Halides: The Effect of Microsolvation
Authors
Osuna, SSwart, MBaerends, EJBickelhaupt, FMSola, Mnull
Date Issued
2009-12
Publisher
WILEY-V C H VERLAG GMBH
Abstract
Herein we report density functional calculations of homolytic and heterolytic dissociation energies of the diatomic alkalimetal halides MX (M = Li, Na, K, Rb, and Cs and X = F, Cl, Br, I, and At) and their corresponding microsolvated structures MX center dot(H2O)(n) (n = 1 to 4). Our results show that the homolytic dissociation energy of the MX center dot(H2O)(n) species increases with the number of water molecules involved in the microsolvated salts. On the other hand, the heterolytic dissociation energy follows exactly the opposite trend. As a result, while for the isolated diatomic alkalimetal halides, homolytic dissociation is always favored over heterolytic dissociation, the latter is preferred for CsF and CsCl already for n=2, and for n=4 it is the preferential mode of dissociation for more than half of the species studied.
Keywords
ab initio calculations; alkali metals; density functional calculations; halides; solvent effects; CORRELATED MOLECULAR CALCULATIONS; GAUSSIAN-BASIS SETS; DENSITY-FUNCTIONAL THEORY; SODIUM-CHLORIDE CLUSTERS; WATER CLUSTERS; AB-INITIO; AQUEOUS-SOLUTIONS; ION-PAIRS; NEUTRON-SCATTERING; CHARGE SEPARATION
URI
https://oasis.postech.ac.kr/handle/2014.oak/27685
DOI
10.1002/CPHC.200900480
ISSN
1439-4235
Article Type
Article
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