Kiralj R., Ferreira M. M. C., "Simple Quantitative Structure-Property
Relationship (QSPR) Modeling of 17O Carbonyl
Chemical Shifts in Substituted Benzaldehydes Compared to DFT and
Empirical Approaches", J. Phys. Chem. A, 112(27), 6134-6149
(2008).
[Article]
Abstract.
The geometry of 50 substituted benzaldehydes was optimized at the semiempirical
PM3 level, and various electronic and steric descriptors accounting for
properties of the benzene ring, aldehyde group, and their connecting carbon-carbon
bond were calculated. Quantitative structure-property relationships (QSPR)
between 17O carbonyl chemical shifts and
these descriptors were established using partial least-squares regression
and principal component regression. These two parsimonious QSPR models
were comparable with the literature empirical model and DFT (density functional
theory) and capable of predicting 17O chemical
shifts for 10 benzaldehydes. Principal component analysis, hierarchical
cluster analysis, and crystal structure data retrieved from the Cambridge
Structural Database were additional methods for chemical verification of
the regression models. The QSPR models are recommended as being more reliable
than and superior to the empirical and DFT models due to the results of
all validations, simplicity, and short time that regressions need for 17O
shift prediction.
Keywords.
Keywords Plus.