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首页> 外文期刊>Journal of Chemical Education >Is There a Need to Discuss Atomic Orbital Overlap When Teaching Hydrogen-Halide Bond Strength and Acidity Trends in Organic Chemistry?
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Is There a Need to Discuss Atomic Orbital Overlap When Teaching Hydrogen-Halide Bond Strength and Acidity Trends in Organic Chemistry?

机译:在有机化学中教授卤化氢键强度和酸度趋势时,是否需要讨论原子轨道重叠?

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摘要

Undergraduate organic chemistry textbooks and Internet websites use a variety of approaches for presenting and explaining the impact of halogen atom size on trends in bond strengths and/or acidity of hydrogen halides. In particular, several textbooks and Internet websites explain these trends by invoking decreasing orbital overlap between the hydrogen is atomic orbital and successively larger group 17 halogen atomic orbitals. A similar orbital overlap rationalization is often extended to the trends in alkyl halide bond strengths. We examined this orbital overlap explanation using quantum mechanical calculations. Calculations reveal that orbital overlap increases rather than decreases with successively larger group 17 halogen atomic orbitals. This suggests that an orbital overlap explanation is physically incorrect and unneeded. Alternative to orbital overlap, we briefly discuss physically correct models for rationalizing halogen bond strength and acidity based on quantum mechanical valence bond theory and molecular orbital theory.
机译:本科生有机化学教科书和互联网网站使用各种方法来介绍和解释卤原子尺寸对卤化氢键强度和/或酸度趋势的影响。尤其是,一些教科书和互联网网站通过调用氢原子轨道和依次更大的17族卤素原子轨道之间越来越小的轨道重叠来解释这些趋势。通常将类似的轨道重叠合理化扩展到烷基卤化物键强度的趋势。我们使用量子力学计算研究了这种轨道重叠的解释。计算表明,轨道重叠随着第17族卤素原子轨道的不断增大而增加而不是减小。这表明轨道重叠的解释在物理上是不正确的并且是不需要的。除了轨道重叠以外,我们还将简要讨论基于量子力学价键理论和分子轨道理论合理化卤素键强度和酸度的物理正确模型。

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