Structure of guest-host complexes of β-cyclodextrin with arenes: a quantum-chemical study

被引:0
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作者
V. G. Avakyan
V. B. Nazarov
M. V. Alfimov
A. A. Bagatur'yants
机构
[1] Russian Academy of Sciences,Center of Photochemistry
[2] Russian Academy of Sciences,Institute of Problems of Chemical Physics
来源
Russian Chemical Bulletin | 1999年 / 48卷
关键词
β-cyclodextrin; dimer of β-cyclodextrin molecule; inclusion complexes of β-cyclodextrin with naphthalene, fluorehe, phenanthrene, and cyclohexane; β-cyclodextrin-naphthalene-cyclohexane complex; H-bonds in β-cyclodextrin molecule; quantum-chemical calculations of maltose molecule and glucose dimer; semiempirical MNDO/MP3 method;
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学科分类号
摘要
The structure of β-cyclodextrin (β-CD), as well as the structure and energetics of β-CD-naphthalene, β-CD-fluorene, β-CD-phenanthrene, β-CD-cyclohexane (1:1), and β-CD-naphthalene (2:2) inclusion complexes was studied by the semiempirical MNDO/PM3 method. Calculations of a β-CD-naphthalene-cyclohexane (1:1:1) complex were also performed. The minimum heat of formation was found for the symmetric β-CD conformation withC7 symmetry axis. The structure is stabilized by the ring of interunit H-bonds formed by the protons of the 2-OH groups and the O atoms of the 3′-OH groups of the glucose units. Preferableness of this orientation of interunit H-bonds was confirmed byab initio calculations of the molecule of α-(1–4)-glucobiose (maltose) in the MP2/6-31G(d,p)//6-31G(d,p) approximation. The formation of any inclusion compounds of β-CD with arenes is energetically favorable: the complexation energy varies in the range −9 to −12 kcal mol−1. Among complexes with naphthalene, that of composition 2:2 is the most energetically favorable, which is in agreement with experimental data. In this complex, β-CD exists as a dimer of the “head-to-head” type, in which both partners are linked by a system of H-bonds. The structure of the “head-to-head” dimer of β-CD was simulated byab initio calculations of the H-bonded dimer of α-d-glucose in the RHF/6-31G(d,p) approximation. In the dimer, both components are linked by a pair of H-bonds formed by the protons of the 3-OH groups and the O atoms of the, 2-OH groups. The dimerization energies obtained fromab initio and semiempirical MNDO/PM3 and AM1 calculations differ by about 2.5 times (8.6vs 3.2 and 3.8 kcal mol−1, respectively).
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页码:1833 / 1844
页数:11
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