THEORETICAL-STUDY OF THE AROMATIC CHARACTER OF THE TRANSITION-STATES OF ALLOWED AND FORBIDDEN CYCLOADDITIONS

被引:46
作者
BERNARDI, F [1 ]
CELANI, P [1 ]
OLIVUCCI, M [1 ]
ROBB, MA [1 ]
SUZZIVALLI, G [1 ]
机构
[1] UNIV LONDON KINGS COLL, DEPT CHEM, LONDON WC2R 2LS, ENGLAND
关键词
D O I
10.1021/ja00147a014
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
It is demonstrated that the resonance and delocalization energies defined in the theory of aromaticity can be computed using a VB Hamiltonian obtained from a CASSCF wave function. The resonance and delocalization energies of benzene and cyclobutadiene computed in this way are in good agreement with the accepted empirical estimates. An application of this procedure to the transition structure of the [2 pi(s) + 2 pi(s)] ethylene dimerization (as a prototype of a forbidden cycloaddition) and to the transition structure for the [2 pi(s) + 4 pi(s)] addition of ethylene and butadiene (as a prototype of an allowed cycloaddition) shows that the concepts of aromaticity and antiaromaticity can be used to rationalize the stability of transition states of pericyclic reactions. The delocalization energy, which accounts for the large stability of benzene, also rationalizes the low reaction barrier for the [2 pi(s) + 4 pi(s)] transition structure as well as the instability of square cyclobutadiene and the large reaction barrier for the [2 pi(s) + 2 pi(s)] transition structure. The magnitude of the delocalization energy itself has been rationalized in terms of exchange integrals K-ij and the related exchange density matrix elements P-ij. The 1,2 interactions give broadly similar stabilizing contributions in four- and six-electron systems. The small delocalization energy in four-electron systems (square cyclobutadiene and the [2 pi(s) + 2 pi(s)] transition structure) arises from the destabilizing effect of the 1,3 interactions. In contrast, the 1,4 interactions have a significant additional stabilizing effect on the delocalization energy of six-electron systems, benzene and the [2 pi(s) + 4 pi(s)] transition structure (while the effect of the destabilizing 1,3 interactions is smaller for geometric reasons).
引用
收藏
页码:10531 / 10536
页数:6
相关论文
共 43 条
  • [1] [Anonymous], 1944, QUANTUM CHEM
  • [2] BADGOR GM, 1969, AROMATIC CHARACTER A
  • [3] MOLECULAR MECHANICS VALENCE-BOND METHODS FOR LARGE ACTIVE SPACES - APPLICATION TO CONJUGATED POLYCYCLIC-HYDROCARBONS
    BEARPARK, MJ
    ROBB, MA
    BERNARDI, F
    OLIVUCCI, M
    [J]. CHEMICAL PHYSICS LETTERS, 1994, 217 (5-6) : 513 - 519
  • [4] PREDICTING FORBIDDEN AND ALLOWED CYCLOADDITION REACTIONS - POTENTIAL SURFACE-TOPOLOGY AND ITS RATIONALIZATION
    BERNARDI, F
    OLIVUCCI, M
    ROBB, MA
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 1990, 23 (12) : 405 - 412
  • [5] AN MC-SCF STUDY OF THE THERMAL CYCLO-ADDITION OF 2 ETHYLENES
    BERNARDI, F
    BOTTONI, A
    ROBB, MA
    SCHLEGEL, HB
    TONACHINI, G
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (08) : 2260 - 2264
  • [6] PARAMETRIZATION OF A HEITLER-LONDON VALENCE BOND HAMILTONIAN FROM COMPLETE-ACTIVE-SPACE SELF-CONSISTENT-FIELD COMPUTATIONS - AN APPLICATION TO CHEMICAL-REACTIVITY
    BERNARDI, F
    OLIVUCCI, M
    MCDOUALL, JJW
    ROBB, MA
    [J]. JOURNAL OF CHEMICAL PHYSICS, 1988, 89 (10) : 6365 - 6375
  • [7] BERNARDI F, 1989, RES CHEM INTERMEDIAT, P217
  • [8] 4-CENTER 2-ELECTRON BONDING IN A TETRAHEDRAL TOPOLOGY - EXPERIMENTAL REALIZATION OF 3-DIMENSIONAL HOMOAROMATICITY IN THE 1,3-DEHYDRO-5,7-ADAMANTANEDIYL DICATION
    BREMER, M
    SCHLEYER, PV
    SCHOTZ, K
    KAUSCH, M
    SCHINDLER, M
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1987, 26 (08): : 761 - 763
  • [9] CHANDRASEKHAR J, 1979, TETRAHEDRON LETT, P3700
  • [10] DEWAR MJS, 1974, ORBITAL SYMMETRY PAP