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Hydrogen Bonding in Acetylacetaldehyde: Theoretical Insights from the Theory of Atoms in Molecules

机译:乙酰乙醛中的氢键:分子中原子理论的理论洞察

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摘要

All the possible conformations of tautomeric structures (keto and enol) of acetylacetaldehyde (AAD) were fully optimized at HF, B3LYP, and MP2 levels with 6-31G(d,p) and 6-311++G(d,p) basis sets to determine the conformational equilibrium. Theoretical results show that two chelated enol forms have extra stability with respect to the other conformers, but identification of global minimum is very difficult. The high level ab initio calculations G2(MP2) and CBS-QB3) also support the HF conclusion. It seems that the chelated enol forms have equal stability, and the energy gap between them is probably lies in the computational error range. Finally, the analysis of hydrogen bond in these molecules by quantum theory of atoms in molecules (AIM) and natural bond orbital (NBO) methods fairly support the ab initio results.
机译:在HF,B3LYP和MP2含量为6-31G(d,p)和6-311 ++ G(d,p)的基础上,完全优化了乙酰乙醛(AAD)的互变异构结构(酮和烯醇)的所有可能构象设置以确定构象平衡。理论结果表明,两种螯合的烯醇形式相对于其他构象异构体具有额外的稳定性,但是鉴定整体最小值非常困难。高级别的从头计算(G2(MP2)和CBS-QB3)也支持HF结论。螯合的烯醇形式似乎具有相同的稳定性,它们之间的能隙可能在计算误差范围内。最后,通过分子中原子的量子理论(AIM)和自然键轨道(NBO)方法对这些分子中的氢键进行分析,完全可以从头算结果。

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