AB-INITIO MOLECULAR-ORBITAL STUDIES OF NONIDENTITY ALLYL TRANSFER-REACTIONS

被引:30
作者
LEE, IC
KIM, CK
LEE, BS
机构
[1] Department of Chemistry, Inha University, Inchon
关键词
D O I
10.1002/jcc.540160811
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Ab initio molecular orbital(MO) calculations are carried out on the nonidentity allyl transfer processes, X(-) + CH2CHCH2Y reversible arrow CH(2)CHCH(2)X + Y-, with X(-)= H, F, and Cl and Y = H, NH2, OH, F, PH2, SH, and Cl. The Marcus equation applies well to the allyl transfer reactions. The transition state (TS) position along the reaction coordinate and the TS structure are strongly influenced by the thermodynamic driving force, whereas the TS looseness is originated from the intrinsic barrier. The intrinsic barrier, Delta E(0)(d)ouble dagger, looseness, %L(d)ouble dagger, and absolute asymmetry, % AS(d)ouble dagger are well correlated with the percentage bond elongation, %CY(d)ouble dagger = [(d(CY)(d)ouble dagger - d(CY)(0))/d(CY)(0)] x 100 and/or %CX(d)ouble dagger. The %CY(d)ouble dagger and the bond orders indicate that a stronger nucleophile and/or a stronger nucleofuge (or a better leaving group) leads to an earlier TS on the reaction coordinate with a lesser degree of bond making as well as bond breaking. These are consistent with the Bell-Evans-Polanyi principle and the Leffler-Hammond postulate. (C) 1995 by John Wiley & Sons, Inc.
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页码:1045 / 1054
页数:10
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