QUANTITATIVE-ANALYSIS OF SOLVENT EFFECTS ON THE RATE OF HETEROLYSIS REACTIONS - RELATIVE IMPORTANCE OF CATION AND ANION SOLVATION

Citation
T. Mitsuhashi et al., QUANTITATIVE-ANALYSIS OF SOLVENT EFFECTS ON THE RATE OF HETEROLYSIS REACTIONS - RELATIVE IMPORTANCE OF CATION AND ANION SOLVATION, Bulletin of the Chemical Society of Japan, 67(3), 1994, pp. 831-838
Citations number
20
Categorie Soggetti
Chemistry
ISSN journal
00092673
Volume
67
Issue
3
Year of publication
1994
Pages
831 - 838
Database
ISI
SICI code
0009-2673(1994)67:3<831:QOSEOT>2.0.ZU;2-Z
Abstract
A number of heterolysis reactions which are insusceptible or less susc eptible to hydrogen bonding by protic solvents are exemplified. It is emphasized that reactions of this type are as important as those of th e hydrogen bond-susceptible type that are prone to be taken as a commo n feature of heterolysis reactions. Evidence that a primary factor in determining the type of reaction is the relative importance of cation and anion solvation is given by introducing a two-parameter equation f or solvent effects on the rate: DELTA G(double dagger) = DELTAG(double dagger)DMSO - a (chi+ + bchi- - 1) in which chi+ and chi- are scales for cation and anion solvation for a particular solvent, respectively. These scales have been derived from purely kinetic data for eight sol vents; methanol, ethanol, dimethyl sulfoxide (DMSO), N,N-dimethylforma mide, acetonitrile, pyridine, nitrobenzene, and acetone. The equation applies satisfactorily to twelve typical heterolysis reactions. The co efficients a and b represent the sensitivity to solvent change and the relative importance of cation and anion solvation, respectively. When b = 1, the rate in DMSO is equal to that in methanol, and thus hetero lysis reactions can be classified: b > 1, hydrogen bond-susceptible; b < 1, hydrogen bond-insusceptible.