Theoretical Investigations of the Spin Hamiltonian Parameters for the Mononuclear Square Pyramidal [CuO5] Groups in Two Paddle Wheel Copper Complexes
- Autores: Wu L.1, Wu S.1, Kuang M.2, Zhang L.1, Peng L.1
-
Afiliações:
- School of Physical Electronics, University of Electronic Science and Technology of China
- School of Physical Science and Technology, Southwest University
- Edição: Volume 49, Nº 2 (2018)
- Páginas: 125-135
- Seção: Original Paper
- URL: https://ogarev-online.ru/0937-9347/article/view/248041
- DOI: https://doi.org/10.1007/s00723-017-0971-0
- ID: 248041
Citar
Resumo
The spin Hamiltonian parameters (SHPs) (g factors and hyperfine structure constants) for the mononuclear square pyramidal [CuO5] groups in two paddle wheel copper complexes {Cu2(μ2–O2CCH3)4}(OCNH2CH3) and \({}_{\infty }^{3} [{\text{Cu}}_{ 2}^{\text{I}} {\text{Cu}}_{ 2}^{\text{II}} ( {\text{H}}_{ 2} {\text{O)}}_{ 2} {\text{L}}_{ 2} {\text{Cl}}_{ 2} ]\) are theoretically investigated from the perturbation calculations of these parameters for a rhombically elongated octahedral 3d9 group. The slightly larger anisotropy Δg (≈ g// − g⊥) of complex 1 than complex 2 is attributed to the slightly bigger deviations of the polar angles related to the ideal value 90° and relative differences between the axial and basal Cu–O distances in the former. The axiality of the EPR signals for both systems can be illustrated as the fact that the perpendicular anisotropic contributions to X and Y components of the SHPs arising from the four basal ligands with slightly distinct bond lengths and bond angles may roughly cancel one another. The signs of hyperfine structure constants are also theoretically determined for both complexes.
Sobre autores
Li-Na Wu
School of Physical Electronics, University of Electronic Science and Technology of China
Autor responsável pela correspondência
Email: wulina509@163.com
ORCID ID: 0000-0002-5911-5780
República Popular da China, Chengdu, 610054
Shao-Yi Wu
School of Physical Electronics, University of Electronic Science and Technology of China
Email: wulina509@163.com
República Popular da China, Chengdu, 610054
Min-Quan Kuang
School of Physical Science and Technology, Southwest University
Email: wulina509@163.com
República Popular da China, Chongqing, 400715
Li-Juan Zhang
School of Physical Electronics, University of Electronic Science and Technology of China
Email: wulina509@163.com
República Popular da China, Chengdu, 610054
Li Peng
School of Physical Electronics, University of Electronic Science and Technology of China
Email: wulina509@163.com
República Popular da China, Chengdu, 610054
Arquivos suplementares
