4.6 Article

Structure-property correlation in stabilizing axial magnetic anisotropy in octahedral Co(II) complexes

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CELL REPORTS PHYSICAL SCIENCE
卷 2, 期 4, 页码 -

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CELL PRESS
DOI: 10.1016/j.xcrp.2021.100404

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资金

  1. SERB [CRG/2019/004185, SPR/2019/001145, CRG/2018/000430, DST/SJF/CSA-03/2018-10, SB/SJF/2019-20/12]
  2. CSIR [01(2933)/18/EMR-II]
  3. IIT Bombay
  4. Danish National Research Foundation [DNRF-93]
  5. Villum Foundation
  6. Deutsche Forschungsgemeinschaft (DFG
  7. German Research Foundation) [EXC2181/1-390900948]
  8. BMBF via the SpinFun project [13XP5088]
  9. HLD at HZDR

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This study reports a complex of octahedral Co(II) that exhibits an easy axis of magnetization, which has been experimentally and theoretically confirmed. By rational ligand choice, the parameters controlling the stabilization of negative D in a common octahedral geometry have been unveiled.
Stabilizing an easy axis of magnetization in an octahedral Co(Il) complex is an extremely challenging task, which is evident from reports that more than 90% possess easy-plane anisotropy. Here, we report a six-coordinate complex, [Co(L-1)(4)(CI)(2)] (1, L-1 = thiourea [H2N-CS-NH2]), that exhibits a D value of 63(10) cm(-1) The presence of an easy axis of magnetization associated with 1 is experimentally proven by detailed magnetic studies and polarized neutron diffraction studies, and the experimental observations are well corroborated by theoretical calculations. From the combined experimental and theoretical investigations (on 1 and many model systems), we unveil the parameters that control stabilization of negative D in a thermodynamically favorable and air-stable Co(II) ion in the common distorted octahedral geometry. This study paves the way for overcoming the current impediments to alleviate the easy axis of magnetization using rational ligand choice.

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