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Eclipsed Acetaldehyde as a Precursor for Producing Vinyl Alcohol

机译:蚀乙醛作为生产乙烯醇的前体

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摘要

The MP2 and DFT/B3LYP methods at 6-311++G(d,p) and aug-cc-pdz basis sets have been used to probe the origin of relative stability preference for eclipsed acetaldehyde over its bisected counterpart. A relative energy stability range of 1.02 to 1.20 kcal/mol, in favor of the eclipsed conformer, was found and discussed. An NBO study at these chemistry levels complemented these findings and assigned the eclipsed acetaldehyde preference mainly to the vicinal antiperiplanar hyperconjugative interactions. The tautomeric interconversion between the more stable eclipsed acetaldehyde and vinyl alcohol has been achieved through a four-membered ring transition state (TS). The obtained barrier heights and relative stabilities of eclipsed acetaldehyde and the two conformers of vinyl alchol at these model chemistries have been estimated and discussed.
机译:已使用6-311 ++ G(d,p)和aug-cc-pdz基集的MP2和DFT / B3LYP方法来探究偏乙醛相对于其一分为二的相对稳定性的相对稳定性的起源。发现并讨论了相对能量稳定性范围为1.02至1.20 kcal / mol,有利于黯淡的构象体。在这些化学水平上的一项NBO研究对这些发现进行了补充,并将黯淡的乙醛偏爱主要归因于邻近的反平面性超共轭相互作用。通过四元环过渡态(TS)实现了更稳定的偏光乙醛和乙烯醇之间的互变异构互变。已经估计和讨论了在这些模型化学上获得的蚀出的乙醛和乙烯醇的两个构象异构体的势垒高度和相对稳定性。

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