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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >A new algorithm for the evaluation of equilibrium inter nuclear bond distance of heteronuclear diatomic molecules based on the hardness equalization principle
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A new algorithm for the evaluation of equilibrium inter nuclear bond distance of heteronuclear diatomic molecules based on the hardness equalization principle

机译:基于硬度均衡原理的异核双原子分子平衡核键间距离估算新算法

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摘要

In this report, we have derived a formula for evaluating the equilibrium inter nuclear bond distances of heteronuclear diatomics relying upon the concept of hardness equalization principle. We have relied upon the fact that the hardness, like the electronegativity, is a qualitative property and since there is much commonality in the basic philosophy of the origin and the operational significance of these two fundamental descriptors - the electronegativity and the hardness, there should be a physical process of hardness equalization similar to the electronegativity equalization. Starting from the radial dependent formula of computing hardness of atoms suggested by us and relying upon the hypothesis of hardness equalization principle, we have derived an algorithm for computing the equilibrium inter nuclear bond distance of hetero nuclear diatomics as R AB(?) ≈ C(14.4/πAB), where πAB} (eV) is the molecular hardness, C is the constant depends on the fundamental nature of hardness e.g. the bond type, steric factor etc. The optimized value of C is 0.95. We have invoked the algorithm stated above to compute the equilibrium inter nuclear bond lengths of as many as four different sets of compounds with widely divergent chemico-physical properties. In order to explore the efficaciousness of the formula derived in the present work, we have performed a validity test by comparing the theoretically evaluated bond distances vis-à-vis their corresponding spectroscopic counterparts. The comparative study reveals the surprising results that in majority of cases, the theoretical bond distances just superimpose upon the experimental bond distances. Thus, it is transparent that the hardness equalization principle is justifiably a physical process during the formation of molecule.
机译:在这份报告中,我们根据硬度均衡原理的概念,推导了用于评估异核双原子平衡核键间距离的公式。我们依靠这样一个事实,即硬度,如电负性一样,是定性性质,并且由于起源的基本原理和这两个基本描述符的操作意义(电负性和硬度)有很多共性,因此应该类似于电负性均衡的硬度均衡的物理过程。从我们提出的计算原子硬度的径向相关公式开始,并基于硬度均衡原理的假设,我们得出了一种计算杂原子双原子的平衡核键间距离的算法为R AB(?)≈C( 14.4 /πAB),其中πAB}(eV)是分子硬度,C是常数取决于硬度的基本性质,例如C的最佳值为0.95。我们已经调用了上述算法来计算多达四组具有广泛不同的化学物理性质的化合物的平衡核间键长。为了探索在当前工作中得出的公式的有效性,我们通过比较理论上评估的键距与其对应的光谱对应物的键距,进行了有效性测试。对比研究揭示了令人惊讶的结果,在大多数情况下,理论键距只是叠加在实验键距上。因此,透明的是,硬度均衡原理合理地是分子形成期间的物理过程。

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