| Literature DB >> 29861952 |
Yin-Shan Meng1, Zhenbo Mo2, Bing-Wu Wang1, Yi-Quan Zhang3, Liang Deng2, Song Gao1.
Abstract
The slow magnetic relaxation typical for single-ion magnets has been known for certain low-coordinate 3d metal complexes with d6, d7, and d9 electronic configurations, but never for d8 complexes. Herein, we report a study on two-coordinate d8 cobalt(i)-N-heterocyclic carbene complexes, for which slow magnetic relaxation behavior was observed for [Co(IMes)2][BPh4] (IMes: 1,3-dimesitylimidazol-2-ylidene) under an applied dc field. The system represents the first d8 single-ion magnet, and features a fitted energy barrier of Ueff = 21.3 cm-1 and pre-exponential factor of τ0 = 6.6 × 10-6 s. The analog two-coordinate cobalt(i) complexes with different NHC ligands, [Co(sIMes)2][BPh4] (sIMes: 1,3-dimesitylimidazolin-2-ylidene) and [Co(IAd)2][BArF4] (IAd: 1,3-dimesitylimidazol-2-ylidene; BArF4: tetra(3,5-ditrifluoromethylphenyl)borate), do not show such single-ion magnet behaviour. Ab initio calculations imply that the dihedral angle between the two NHC planes and the degree of unsaturation of the NHC ligands can dramatically alter the D value of the two-coordinate cobalt(i)-NHC ions, possibly via changing of the Co-NHC π-interactions, and hence affect the spin-orbit coupling splitting.Entities:
Year: 2015 PMID: 29861952 PMCID: PMC5951210 DOI: 10.1039/c5sc02611c
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Two-coordinate cobalt(i)–NHC complexes.
Scheme 2Preparation routes for the two-coordinate cobalt(i) complexes (a) [Co(sIMes)2][BPh4] and (b) [Co(IAd)2][BArF4].
Fig. 1Structures of the cations [Co(IMes)2]+ of 1 (top), [Co(sIMes)2]+ of 2 (middle), and [Co(IAd)2]+ of 3 (bottom) showing 30% probability ellipsoids and the partial atom numbering schemes.
Key distances (Å) and angles (°) of the two-coordinate cations in 1–3, revealed by XRD
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| C–Co–C | 178.6(1) | 178.4(1) | 180 |
| Co–C | 1.937(2) | 1.936(2) | 1.943(3) |
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| 39.55 | 35.02 | 90 |
| Co···C | 3.838 | 3.651 | 2.878 |
| Co···Co | 9.312 | 9.322 | 13.496 |
Data from ref. 10.
Dihedral angle between the two idealized planes of the five-membered rings of the carbene ligands.
The shortest Co···C separation of the cobalt center with the carbon atoms on the N-wingtip.
The shortest Co–Co separation.
Fig. 2χ m T products versus T plots for 1–3. These data were collected under a 1 kOe applied dc field.
Fig. 3Frequency-dependent out-of-phase component for 1 under a 2 kOe dc field. Solid lines are a guide for the eyes.
Fig. 4Relaxation time τ versus the inverse of temperature T–1 plot. The red line represents the thermal relaxation fitted by the Arrhenius law. Inset: ln τ versus temperature T plot. The blue line represents the exponential fitting.
Calculated D and E values (cm–1) using a CASPT2 method corresponding to different dihedral angles α (°) in [Co(IPh)2]1+
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| 30 | 39.55 | 50 | 60 | 70 | 80 | 90 |
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| 29.4 | 33.4 | 0.04 | 0.03 | –1.2 | 3.1 | –2.02 |
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| 2.9 | –4.4 | –0.008 | –0.005 | –0.03 | –0.2 | –0.3 |
Dihedral angle between the two idealized planes of the five-membered rings of the carbene ligands.