TY - JOUR
T1 - Prediction of preferred protonation sites in pyrrole and its methyl derivatives using molecular electrostatic potentials derived from the PM3 and AM1 methods
AU - Nakajima, Yasushi
AU - Sakagishi, Yoshikatsu
AU - Shiibashi, Michio
AU - Suzuki, Yuuji
AU - Kato, Hitoshi
PY - 1993/12/13
Y1 - 1993/12/13
N2 - The PM3 and AM1 molecular orbital programs have been employed for the investigation of the preferred protonation sites in pyrrole and its N-methyl, 2,5-dimethyl, 3-methyl, 2-methyl and 1,2-dimethyl derivatives. The following are reported: the LCAO coefficients of the HOMO (2pz) (the HOMO coefficients); the atomic centered charges, which are calculated by the subroutine 'ESP' (ESP charges); the atomic net charges, which are obtained by a Mulliken population analysis (Mulliken net atomic charges). The predictions of the preferred protonation sites made by the HOMO coefficients and ESP charges are in perfect agreement with experimental data, whereas those made by the HOMO coefficients and Mulliken net atomic charges are not in agreement. It is hence obvious that the protonation of pyrrole and its methyl derivatives is controlled by not only HOMO-LUMO interaction but also by electrostatic forces, which are estimated by ESP charges. In other words, the subroutine 'ESP' is useful for estimation of a kind of electrostatic reaction of pyrrole and its methyl derivatives, which suggests that the subroutine may be effective for the investigation of the electrostatic reactions of other compounds.
AB - The PM3 and AM1 molecular orbital programs have been employed for the investigation of the preferred protonation sites in pyrrole and its N-methyl, 2,5-dimethyl, 3-methyl, 2-methyl and 1,2-dimethyl derivatives. The following are reported: the LCAO coefficients of the HOMO (2pz) (the HOMO coefficients); the atomic centered charges, which are calculated by the subroutine 'ESP' (ESP charges); the atomic net charges, which are obtained by a Mulliken population analysis (Mulliken net atomic charges). The predictions of the preferred protonation sites made by the HOMO coefficients and ESP charges are in perfect agreement with experimental data, whereas those made by the HOMO coefficients and Mulliken net atomic charges are not in agreement. It is hence obvious that the protonation of pyrrole and its methyl derivatives is controlled by not only HOMO-LUMO interaction but also by electrostatic forces, which are estimated by ESP charges. In other words, the subroutine 'ESP' is useful for estimation of a kind of electrostatic reaction of pyrrole and its methyl derivatives, which suggests that the subroutine may be effective for the investigation of the electrostatic reactions of other compounds.
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U2 - 10.1016/0166-1280(93)87050-N
DO - 10.1016/0166-1280(93)87050-N
M3 - Article
AN - SCOPUS:0000927062
SN - 2210-271X
VL - 288
SP - 199
EP - 205
JO - Computational and Theoretical Chemistry
JF - Computational and Theoretical Chemistry
IS - 3
ER -