{"title":"Relativistic Effects in Ligand Field Theory (II): Optical and Magnetic Properties of d<sup>1</sup> Atoms in Cubic and Tetragonal Symmetries.","authors":"Jhon Fredy Pérez-Torres","doi":"10.1021/acs.jpca.5c01052","DOIUrl":null,"url":null,"abstract":"<p><p>The relativistic motion of an electron in the <i>n</i>d atomic subshell subjected to an electrostatic ligand field and a magnetic field is studied. The ligand and magnetic fields are treated as perturbations on equal footing, employing the atomic Dirac spinors <i>n</i>d<sub>3/2</sub> and <i>n</i>d<sub>5/2</sub> as basic vectors according to relativistic ligand field theory. The parametrized ligand field allows for the description of <math><msubsup><mrow><mi>C</mi></mrow><mrow><mrow><mn>4</mn></mrow><mrow><mi>v</mi></mrow></mrow><mrow><mo>'</mo></mrow></msubsup></math>, <math><msubsup><mrow><mi>D</mi></mrow><mrow><mrow><mn>4</mn></mrow><mrow><mi>h</mi></mrow></mrow><mrow><mo>'</mo></mrow></msubsup></math>, <math><msubsup><mrow><mi>O</mi></mrow><mrow><mi>h</mi></mrow><mrow><mo>'</mo></mrow></msubsup></math>, and <math><msubsup><mrow><mi>T</mi></mrow><mrow><mi>d</mi></mrow><mrow><mo>'</mo></mrow></msubsup></math> symmetries as particular cases. The wave functions of the ground state manifold Γ<sub><i>i</i></sub>(<sup>2</sup>D<sub>3/2</sub>) are employed to calculate the Zeeman coefficients and consequently the Curie constant according to Van Vleck's theory of paramagnetism. The theoretical framework is illustrated in Rb<sub>2</sub>TaCl<sub>6</sub>, ReF<sub>6</sub>, Ba<sub>2</sub>NaOsO<sub>6</sub>, VO(R-acac)<sub>2</sub>, and Cs[MoOCl<sub>4</sub>] d<sup>1</sup>-systems. It is indicated how correlating the optical transition energies with the magnetic susceptibility enables experimental determination of the theory's parameters: the relativistic ratio <i>p</i>/<i>q</i>, the spin-orbit coupling constant ξ<sub><i>n</i>d</sub>, and the ligand field strengths <i>Dq</i>, <i>Ds,</i> and <i>Dt</i>. Then, from the deduced parameters, the X-band signals of the electron paramagnetic resonance spectrum are predicted. A strong dependency of the magnetic properties upon the relativistic ratio <i>p</i>/<i>q</i> is observed. Energies of the well-separated (ca. 330 cm<sup>-1</sup>) optical transitions Γ<sub>6</sub>(<sup>2</sup>D<sub>3/2</sub>) ← Γ<sub>7</sub>(<sup>2</sup>D<sub>3/2</sub>) and Γ<sub>7</sub>(<sup>2</sup>D<sub>5/2</sub>) ← Γ<sub>7</sub>(<sup>2</sup>D<sub>3/2</sub>) for Cs[MoOCl<sub>4</sub>] are predicted. Our results suggest that the reported spin-orbit coupling constant ξ<sub>5d</sub> for ReF<sub>6</sub> might have been overestimated by more than 1000 cm<sup>-1</sup>, offering valuable insights into the accuracy of previous experimental and theoretical studies.</p>","PeriodicalId":59,"journal":{"name":"The Journal of Physical Chemistry A","volume":"129 17","pages":"3844-3856"},"PeriodicalIF":2.8000,"publicationDate":"2025-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"The Journal of Physical Chemistry A","FirstCategoryId":"1","ListUrlMain":"https://doi.org/10.1021/acs.jpca.5c01052","RegionNum":2,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2025/4/17 0:00:00","PubModel":"Epub","JCR":"Q3","JCRName":"CHEMISTRY, PHYSICAL","Score":null,"Total":0}
引用次数: 0
Abstract
The relativistic motion of an electron in the nd atomic subshell subjected to an electrostatic ligand field and a magnetic field is studied. The ligand and magnetic fields are treated as perturbations on equal footing, employing the atomic Dirac spinors nd3/2 and nd5/2 as basic vectors according to relativistic ligand field theory. The parametrized ligand field allows for the description of , , , and symmetries as particular cases. The wave functions of the ground state manifold Γi(2D3/2) are employed to calculate the Zeeman coefficients and consequently the Curie constant according to Van Vleck's theory of paramagnetism. The theoretical framework is illustrated in Rb2TaCl6, ReF6, Ba2NaOsO6, VO(R-acac)2, and Cs[MoOCl4] d1-systems. It is indicated how correlating the optical transition energies with the magnetic susceptibility enables experimental determination of the theory's parameters: the relativistic ratio p/q, the spin-orbit coupling constant ξnd, and the ligand field strengths Dq, Ds, and Dt. Then, from the deduced parameters, the X-band signals of the electron paramagnetic resonance spectrum are predicted. A strong dependency of the magnetic properties upon the relativistic ratio p/q is observed. Energies of the well-separated (ca. 330 cm-1) optical transitions Γ6(2D3/2) ← Γ7(2D3/2) and Γ7(2D5/2) ← Γ7(2D3/2) for Cs[MoOCl4] are predicted. Our results suggest that the reported spin-orbit coupling constant ξ5d for ReF6 might have been overestimated by more than 1000 cm-1, offering valuable insights into the accuracy of previous experimental and theoretical studies.
期刊介绍:
The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.