Department of Physics and Biophysics, Wrocław University of Environmental and Life Sciences, ul. Norwida 25, 50-375 Wrocław, Poland.
Department of Physical and Quantum Chemistry, Wrocław University of Science and Technology, Wyb. Wyspiańskiego 27, 50-370 Wrocław, Poland.
J Chem Phys. 2017 Oct 7;147(13):134109. doi: 10.1063/1.4995028.
Theoretical justification has been provided to the method for monitoring the sequence of chemical bonds' rearrangement along a reaction path, by tracing the evolution of the diagonal elements of the Hessian matrix. Relations between the divergences of Hellman-Feynman forces and the energy and electron density derivatives have been demonstrated. By the proof presented on the grounds of the conceptual density functional theory formalism, the spectral amplitude observed on the atomic fragility spectra [L. Komorowski et al., Phys. Chem. Chem. Phys. 18, 32658 (2016)] reflects selectively the electron density modifications in bonds of an atom. In fact the spectral peaks for an atom reveal changes of the electron density occurring with bonds creation, breaking, or varying with the reaction progress.
已经通过跟踪海森矩阵对角元素的演化,为沿反应路径监测化学键重排顺序的方法提供了理论依据。已经证明了赫耳曼-费曼力的散度与能量和电子密度导数之间的关系。通过基于概念密度泛函理论形式主义的证明,在原子脆弱性谱上观察到的光谱幅度[L. Komorowski 等人,Phys. Chem. Chem. Phys. 18, 32658 (2016)]选择性地反映了原子键中电子密度的变化。事实上,原子的谱峰揭示了随着键的形成、断裂或随着反应的进行而变化的电子密度变化。