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Probing the Axial Distortion Effect on the Magnetic Anisotropy of Octahedral Co(II) Complexes

Three mononuclear octahedral Co(II) complexes are reported, [Co(py) (SCN) ] ( ), [Co(py) (Cl) ]·H O ( ), and [Co(py) (Br) ] ( ), that exhibit different distortions with compression ( ) or elongation ( and ) of the axial positions. Easy plane magnetic anisotropy was confirmed by magnetic, HF-EPR, and...

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Published in:Inorganic chemistry 2020-06, Vol.59 (11), p.7622-7630
Main Authors: Deng, Yi-Fei, Singh, Mukesh Kumar, Gan, Dexuan, Xiao, Tongtong, Wang, Yinuo, Liu, Shihao, Wang, Zhenxing, Ouyang, Zhongwen, Zhang, Yuan-Zhu, Dunbar, Kim R
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cited_by cdi_FETCH-LOGICAL-c375t-b980c98e0b1ec90f52f01398cde9cc667ecfdb8cf5783566fd3004634422e70c3
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container_end_page 7630
container_issue 11
container_start_page 7622
container_title Inorganic chemistry
container_volume 59
creator Deng, Yi-Fei
Singh, Mukesh Kumar
Gan, Dexuan
Xiao, Tongtong
Wang, Yinuo
Liu, Shihao
Wang, Zhenxing
Ouyang, Zhongwen
Zhang, Yuan-Zhu
Dunbar, Kim R
description Three mononuclear octahedral Co(II) complexes are reported, [Co(py) (SCN) ] ( ), [Co(py) (Cl) ]·H O ( ), and [Co(py) (Br) ] ( ), that exhibit different distortions with compression ( ) or elongation ( and ) of the axial positions. Easy plane magnetic anisotropy was confirmed by magnetic, HF-EPR, and computational studies for all complexes. Further analyses indicate that both the sign and magnitude of zero-field splitting parameters experience a significant change ( ≥ ±150 cm ) by tuning of the axial and equatorial ligand field strength. Slow magnetic relaxation is observed for all compounds which is dominated by the Raman process involving both acoustic and optical phonons.
doi_str_mv 10.1021/acs.inorgchem.0c00531
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title Probing the Axial Distortion Effect on the Magnetic Anisotropy of Octahedral Co(II) Complexes
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