的Orbital-Effect-Myth

IF 0.4 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Chem-Bio Informatics Journal Pub Date : 2018-07-20 DOI:10.1273/CBIJ.18.86
M. Nishio, Yuji Kohno
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引用次数: 0

摘要

在环己烷衍生物中,与取代基相邻氢原子的空间排斥力较小的平伏构象比轴向构象占优势。这是一个正常的立体化学要求。而在环上含有氧原子的己糖中,α-异头体(带轴取代基)比β-异头体(带赤道取代基)更稳定,称为异头效应。为什么这种与立体化学直觉不符(但仍被广泛接受)的现象会发生呢?爱德华的报告已经过去60多年了,但根本原因还不清楚。目前,最流行的解释是,这是由于氧上的孤对电子与C-R键的反键轨道(σ*)之间的相互作用。与普遍的看法相反,我们证明这种解释是站不住脚的。
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The Orbital-Effect-Myth
In the cyclohexane derivatives, the equatorial conformer, having less steric repulsion of hydrogen atoms adjacent to substituent, is dominant over the axial conformer. This is a normal stereochemical requirement. In hexose, containing oxygen atoms in the ring, however, α-anomer (with axial substituent) is more stable than β-anomer (with equatorial substituent) and it is called the anomeric effect. Why does this phenomenon, which is not compatible with the stereochemical intuition (but still widely accepted), happen at all? It has been more than 60 years since Edward reported it, but the root cause has not yet become clear. At present, the most popular explanation for the anomeric effect is that it is due to the interaction between a lone pair of electrons on oxygen and the anti-bonding orbital (σ*) of C-R bond. Contrary to popular belief, we demonstrate that this explanation does not hold.
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来源期刊
Chem-Bio Informatics Journal
Chem-Bio Informatics Journal BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
0.60
自引率
0.00%
发文量
8
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