TY - JOUR
T1 - Reactivity-selectivity relationships. Part 12. Intermediates formed in the solvolysis of substituted benzyl derivatives. The importance of HOMO-LUMO interactions in determining selectivity
AU - Karton, Yishai
AU - Pross, Addy
PY - 1980/1/1
Y1 - 1980/1/1
N2 - The intermediates undergoing nucleophilic attack during the solvolysis of a series of substituted benzyl derivatives in aqueous ethanol are examined in the presence of m-chloroaniline. Conclusions are based on the measurement of substrate selectivity towards the competing nucleophiles, ethanol and m-chloroaniline and the application of perturbation molecular orbital (PMO) theory. The results suggest that p-chlorobenzyl, benzyl, and p-methyl benzyl chlorides undergo nucleophilic attack on intimate ion pairs while p-methoxybenzyl chloride undergoes attack on solvent separated ion pairs. These conclusions are in accord with a previous study on benzyl derivatives utilizing ethanol and water as competing nucleophiles. The importance of HOMO-LUMO interactions in determining substrate selectivity in nucleophilic substitution reactions, using two dissimilar nucleophiles, is confirmed.
AB - The intermediates undergoing nucleophilic attack during the solvolysis of a series of substituted benzyl derivatives in aqueous ethanol are examined in the presence of m-chloroaniline. Conclusions are based on the measurement of substrate selectivity towards the competing nucleophiles, ethanol and m-chloroaniline and the application of perturbation molecular orbital (PMO) theory. The results suggest that p-chlorobenzyl, benzyl, and p-methyl benzyl chlorides undergo nucleophilic attack on intimate ion pairs while p-methoxybenzyl chloride undergoes attack on solvent separated ion pairs. These conclusions are in accord with a previous study on benzyl derivatives utilizing ethanol and water as competing nucleophiles. The importance of HOMO-LUMO interactions in determining substrate selectivity in nucleophilic substitution reactions, using two dissimilar nucleophiles, is confirmed.
UR - http://www.scopus.com/inward/record.url?scp=33845942231&partnerID=8YFLogxK
U2 - 10.1039/p29800000250
DO - 10.1039/p29800000250
M3 - Article
AN - SCOPUS:33845942231
SN - 0300-9580
SP - 250
EP - 254
JO - Journal of the Chemical Society, Perkin Transactions 2
JF - Journal of the Chemical Society, Perkin Transactions 2
IS - 2
ER -