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Statistical Significance of the Maximum Hardness Principle Applied to Some Selected Chemical Reactions

机译:最大硬度原理应用于某些选定化学反应的统计意义

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The validity of the maximum hardness principle (MHP) is tested in the cases of 50 chemical reactions, most of which are organic in nature and exhibit anomeric effect. To explore the effect of the level of theory on the validity of MHP in an exothermic reaction, B3LYP/6-311++G(2df, 3pd) and LC-BLYP/6-311++G(2df, 3pd) (def2-QZVP for iodine and mercury) levels are employed. Different approximations like the geometric mean of hardness and combined hardness are considered in case there are multiple reactants and/or products. It is observed that, based on the geometric mean of hardness, while 82% of the studied reactions obey the MHP at the B3LYP level, 84% of the reactions follow this rule at the LC-BLYP level. Most of the reactions possess the hardest species on the product side. A 50% null hypothesis is rejected at a 1% level of significance.
机译:在50个化学反应的情况下测试了最大硬度原理(MHP)的有效性,其中大多数化学反应是有机反应并表现出端基异构作用。为了探讨理论水平对放热反应中MHP有效性的影响,B3LYP / 6-311 ++ G(2df,3pd)和LC-BLYP / 6-311 ++ G(2df,3pd)(def2 -QZVP用于碘和汞)水平。如果存在多种反应物和/或产物,则应考虑不同的近似值,例如硬度的几何平均值和组合硬度。可以看出,基于硬度的几何平均值,虽然研究的反应中有82%在B3LYP水平上遵守MHP,但84%的反应在LC-BLYP水平上遵循此规则。大多数反应在产物侧具有最硬的物质。 50%的原假设以1%的显着性水平被拒绝。

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