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Determination of the best functional and basis sets for optimization of the structure of hypervalent iodines and calculation of their first and second bond dissociation enthalpies

机译:用于优化高效碘结构的最佳功能和基础集的测定及其第一和第二债券解离焓的计算

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摘要

Hypervalent iodines are widely used in organic chemistry, and their most important feature is the three-center four-electron bond. However, there have been few reports on the measurement of their bond dissociation enthalpy (BDE). Therefore, in many cases, BDE is estimated by computational calculations. However, the value of a calculated BDE usually varies depending on the choice of functional and basis set, and the best method for making an accurate evaluation of the three-center four-electron bond has not been determined. We succeeded in determining the best functional and basis set to calculate the three-center four-electron bond to within 0.79% error and 0.53 standard deviation. Using the optimal functional and basis set, the first and second BDEs of several hypervalent iodines are calculated, and as the effect of benzene substituents was investigated, negative correlation was observed in the Hammett plot. In addition, the effect of ortho-substituent in cyclic hypervalent iodine was found to be significant. Furthermore, the decomposition route of hypervalent iodine is calculated. The value of a calculated BDE usually varies depending on the choice of functional and basis set. We succeeded in determining the best functional and basis sets to calculate the three-center four-electron bond of hypervalent iodine to within 0.79% error and 0.53 standard deviation. Using the optimal functional and basis sets, the first and second BDEs of several hypervalent iodines are calculated, and additionally, the decomposition route of hypervalent iodine is calculated.
机译:高效碘被广泛用于有机化学,最重要的特征是三中心四电子键。然而,关于它们的债券解离焓(BDE)的测量少一些报道。因此,在许多情况下,通过计算计算估算BDE。然而,计算的BDE的值通常根据功能和基础集的选择而变化,并且尚未确定用于制备三中心四电子键的准确评估的最佳方法。我们成功地确定了最佳功能和基础设置,以计算三中心四电子键,以内0.79%误差和0.53标准偏差。使用最佳功能和基础集合,计算几种高效碘的第一和第二BDE,随着苯取代基的影响,在哈姆特图中观察到负相关。此外,发现邻苯甲酸酯对循环型碘碘的影响是显着的。此外,计算了高高碘的分解途径。计算的BDE的值通常根据功能和基础集的选择而变化。我们成功地确定了最佳的功能和基础集,以计算高效碘的三中心四电子键到0.79%误差和0.53标准偏差。使用最佳功能和基础集,计算若干超高度碘的第一和第二BDE,并且另外,计算高效碘的分解路径。

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