在避免Rydberg,伪连续和双极结合轨道的同时找到价值抗结合水平
Iwona Anusiewicz1, Piotr Skurski1, Jack Simons2
1Laboratory of Quantum Chemistry, Faculty of Chemistry, University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland.
Journal of the American Chemical Society
|June 14, 2022
概括
本研究提出了一种在电子结构计算中准确填充价值抗结合轨道的方法,克服其他分子轨道的干扰. 这使得化学过程的精确分析成为可能,特别是对超稳定的电子状态.
科学领域:
- 计算化学
- 量子化学
背景情况:
- 电子结构方法对于解释化学实验数据至关重要.
- 价值抗键轨道 (π* 和 σ*) 对于理解光化学反应,电子减少和反应动态至关重要.
- 侵入轨道 (Rydberg,伪连续,双极结合) 可以使目标反结合轨道的精确数量复杂化.
研究的目的:
- 为电子结构计算中正确填充价值抗键轨道提供实用方法.
- 为了应对类似能量分子轨道的干扰所带来的挑战.
- 能够准确地计算涉及这些轨道的化学过程,特别是对于超稳定状态.
主要方法:
- 使用广泛可用的电子结构代码.
- 开发策略来规避入侵轨道的影响.
- 结合电子相关效应以实现高精度.
主要成果:
- 为填充值 π* 和 σ* 轨道证明了一种可靠的程序.
- 这种方法成功地避免了干扰轨道引起的常见陷.
- 实现精确的计算,提供化学上有用的精度,特别是对于超稳定的电子状态.
结论:
- 提出的方法提高了关键化学过程的电子结构计算的可靠性.
- 即使存在复杂的轨道相互作用,也可以获得准确的价值抗结合轨道群.
- 这种方法对于研究反应机制和能量景观,特别是光化学和电子驱动反应是有价值的.
相关概念视频
Valence Bond Theory and Hybridized Orbitals
21.2K
According to valence bond theory, a covalent bond results when: (1) an orbital on one atom overlaps an orbital on a second atom, and (2) the single electrons in each orbital combine to form an electron pair. The strength of a covalent bond depends on the extent of overlap of the orbitals involved. Maximum overlap is possible when the orbitals overlap on a direct line between the two nuclei.
A σ bond (single bond in a Lewis structure) is a covalent bond in which the electron density is...
A σ bond (single bond in a Lewis structure) is a covalent bond in which the electron density is...
21.2K
Molecular Orbital Theory II
19.6K
Molecular Orbital Energy Diagrams
19.6K
MO Theory and Covalent Bonding
11.2K
The molecular orbital theory describes the distribution of electrons in molecules in a manner similar to the distribution of electrons in atomic orbitals. The region of space in which a valence electron in a molecule is likely to be found is called a molecular orbital. Mathematically, the linear combination of atomic orbitals (LCAO) generates molecular orbitals. Combinations of in-phase atomic orbital wave functions result in regions with a high probability of electron density, while...
11.2K
Molecular Orbital Theory I
32.8K
Overview of Molecular Orbital Theory
32.8K
Valence Bond Theory
9.2K
Coordination compounds and complexes exhibit different colors, geometries, and magnetic behavior, depending on the metal atom/ion and ligands from which they are composed. In an attempt to explain the bonding and structure of coordination complexes, Linus Pauling proposed the valence bond theory, or VBT, using the concepts of hybridization and the overlapping of the atomic orbitals. According to VBT, the central metal atom or ion (Lewis acid) hybridizes to provide empty orbitals of suitable...
9.2K
Electron Orbital Model
68.9K
Orbitals are the areas outside of the atomic nucleus where electrons are most likely to reside. They are characterized by different energy levels, shapes, and three-dimensional orientations. The location of electrons is described most generally by a shell or principal energy level, then by a subshell within each shell, and finally, by individual orbitals found within the subshells.
The first shell is closest to the nucleus, and it has only one subshell with a single spherical orbital called the...
The first shell is closest to the nucleus, and it has only one subshell with a single spherical orbital called the...
68.9K


