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首页> 外文期刊>The Journal of Chemical Physics >Use of nuclear stiffness in search for a maximum hardness principle and for the softest states along the chemical reaction path: A new formula for the energy third derivative gamma
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Use of nuclear stiffness in search for a maximum hardness principle and for the softest states along the chemical reaction path: A new formula for the energy third derivative gamma

机译:利用核刚度寻求最大硬度原理和化学反应路径上最软的状态:能量三阶导数伽马的新公式

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摘要

Nuclear stiffness, expressed as a hardness derivative, appears to be a good measure of the slope of global hardness. The authors analyze molecular states for which hardness has a maximum value. Maximum hardness principle (MHP) has been discussed. At the ground state hardness function does not obtain a maximum value versus spatial coordinates within a constant number of electrons (N), but is so within constant chemical potential (mu) constraint. The authors apply this feature to evaluate an energy third derivative (gamma). MHP has been analyzed via symmetry considerations of nuclear stiffness and nuclear reactivity. Nuclear stiffness has been also applied to study the hardness profile for a chemical reaction. In this case, the authors seek molecular states for which hardness is at a minimum. They have examined systems for which they have recently obtained regional chemical potentials [P. Ordon and A. Tachibana, J. Mol. Model. 11, 312 (2005); J. Chem. Sci. 117, 583 (2005)]. The transition state is found not to be the softest along the chemical reaction path. Nuclear stiffness reflects well the softest conformation of a molecule, which has been found independently along the intrinsic reaction coordinate profile. Electronic energy-density [A. Tachibana, J. Mol. Mod. 11, 301 (2005)] has been used to visualize the reactivity difference between the softest state and the transition state. (c) 2007 American Institute of Physics.
机译:表示为硬度导数的核刚度似乎是整体硬度斜率的良好度量。作者分析了硬度最大的分子状态。已讨论了最大硬度原理(MHP)。在基态下,硬度函数无法在恒定数量的电子(N)内获得相对于空间坐标的最大值,而在恒定的化学势(μ)约束下却是如此。作者应用此功能来评估能量三阶导数(gamma)。已通过对称考虑核刚度和核反应性来分析MHP。核刚度也已用于研究化学反应的硬度分布。在这种情况下,作者寻求硬度最小的分子状态。他们研究了最近获得区域化学势的系统[P. Ordon和A. Tachibana,J。Mol。模型。 11,312(2005); J.化学科学117,583(2005)]。发现沿化学反应路径的过渡态不是最软的。核刚度很好地反映了分子的最软构象,该构象是沿着内在反应坐标分布独立地发现的。电子能量密度[A.橘,J. Mod。 11,11,301(2005)]已用于可视化最软状态和过渡状态之间的反应性差异。 (c)2007年美国物理研究所。

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