The σ-hole revisited

被引:349
作者
Politzer, Peter [1 ]
Murray, Jane S. [1 ]
Clark, Timothy [2 ,3 ]
Resnati, Giuseppe [4 ]
机构
[1] Univ New Orleans, Dept Chem, New Orleans, LA 70148 USA
[2] Friedrich Alexander Univ Erlangen Nurnberg, Comp Chem Ctr, Nagelbachstr 25, D-91052 Erlangen, Germany
[3] Friedrich Alexander Univ Erlangen Nurnberg, Interdisciplinary Ctr Mol Mat, Dept Chem & Pharm, Nagelbachstr 25, D-91052 Erlangen, Germany
[4] Politecn Milan, Lab Nanostruct Fluorinated Mat NFMLab, Dept Chem Mat & Chem Engn Giulio Natta, Via L Mancinelli 7, I-20131 Milan, Italy
关键词
ELECTRON-DENSITY DISTRIBUTION; NONBONDED ATOMIC CONTACTS; DER-WAALS RADII; CRYSTAL-STRUCTURE; INTERMOLECULAR INTERACTIONS; NONCOVALENT INTERACTIONS; DIRECTIONAL PREFERENCES; MOLECULAR-CRYSTALS; DIVALENT SULFUR; GAS-PHASE;
D O I
10.1039/c7cp06793c
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A covalently-bonded atom typically has a region of lower electronic density, a "sigma-hole,'' on the side of the atom opposite to the bond, along its extension. There is frequently a positive electrostatic potential associated with this region, through which the atom can interact attractively but noncovalently with negative sites. This positive potential reflects not only the lower electronic density of the sigma-hole but also contributions from other portions of the molecule. These can significantly influence both the value and also the angular position of the positive potential, causing it to deviate from the extension of the covalent bond. We have surveyed these effects, and their consequences for the directionalities of subsequent noncovalent intermolecular interactions, for atoms of Groups IV-VII. The overall trends are that larger deviations of the positive potential result in less linear intermolecular interactions, while smaller deviations lead to more linear interactions. We find that the deviations of the positive potentials and the nonlinearities of the noncovalent interactions tend to be greatest for atoms of Groups V and VI. We also present arguments supporting the use of the 0.001 a. u. contour of the electronic density as the molecular surface on which to compute the electrostatic potential.
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页码:32166 / 32178
页数:13
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