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Pinacolone-Alcohol Gas-Phase Solvation Balances as Experimental Dispersion Benchmarks

机译:Pinacolone-醇气相溶剂处理作为实验分散基准

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摘要

The influence of distant London dispersion forces on the docking preference of alcohols of different size between the two lone electron pairs of the carbonyl group in pinacolone was explored by infrared spectroscopy of the OH stretching fundamental in supersonic jet expansions of 1:1 solvate complexes. Experimentally, no pronounced tendency of the alcohol to switch from the methyl to the bulkier tert-butyl side with increasing size was found. In all cases, methyl docking dominates by at least a factor of two, whereas DFT-optimized structures suggest a very close balance for the larger alcohols, once corrected by CCSD(T) relative electronic energies. Together with inconsistencies when switching from a C4 to a C5 alcohol, this points at deficiencies of the investigated B3LYP and in particular TPSS functionals even after dispersion correction, which cannot be blamed on zero point energy effects. The search for density functionals which describe the harmonic frequency shift, the structural change and the energy difference between the docking isomers of larger alcohols to unsymmetric ketones in a satisfactory way is open.
机译:通过红外光谱施加1:1溶剂化物配合物的超声喷射膨胀基础的红外光谱,探索了遥控伦敦分散力对不同尺寸的两种孤电子对之间不同尺寸的醇的对接偏好的影响。实验地,发现,发现从甲基切换到Bulkier叔丁基侧的醇的发音趋势随着尺寸的增加。在所有情况下,甲基对接的占主导地位的至少一倍,而DFT优化的结构表明较大醇的较为密切的平衡,一旦通过CCSD(T)相对电子能校正。当从C4切换到C5酒精时,在调查B3LYP的缺陷和特定TPS官能下,即使在分散校正之后,该点也会在一起的不一致性,这不能归咎于零点能量效应。搜索描述谐波频率偏移,结构变化和较大醇的对接异构体与不对称酮的谐波频率偏移之间的结构变化和能量差异。

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