4.7 Article

Fine-tuning the magnetocaloric effect and SMMs behaviors of coplanar RE4 complexes by β-diketonate coligands

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INORGANIC CHEMISTRY FRONTIERS
卷 4, 期 5, 页码 860-870

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c7qi00034k

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  1. National Natural Science Foundation of China [21473121, 21571138]
  2. Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education, NanKai University, Opening Foundation)

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By introducing different beta-diketonate coligands 1,3-diphenyl-1,3-propanedione (dbm) and acetylacetonate (acac), two series of new tetranuclear rare earth (RE) complexes [RE4(dbm)(4)L-6(mu(3)-OH)(2)]center dot xCH(3)CN center dot yCH(2)Cl(2) (RE = Y (1), Gd (2), Tb (3), Dy (4), Ho (5), Er (6) and Lu (7)) and [RE4(acac)(4)L-6(mu(3)-OH)(2)]center dot xCH(3)CN (RE = Gd (8), Tb (9) and Dy (10)) based on 8-hydroxyquinoline Schiff base have been synthesized and characterized. RE4 clusters display subtle variation in the coordination geometry of REIII ion, but display remarkably dissimilar magnetic behaviors. Magnetic studies show that 2 and 8 act as cryogenic magnetic refrigerants, while 4 and 10 exhibit different slow magnetic relaxation. With the optimized dc fields, two Dy-4 clusters both show multiple magnetic relaxation processes by comparing with the zero dc field due to the quantum tunneling of magnetization is mostly suppressed. Interestingly, complex 10 displays two-step relaxation processes occur with U-eff = 37.49 K (FR) and 89.89 K (SR) in the absence of an external field, and one with U-eff = 116.20 K in the presence of a 1500 Oe optimum field. These diversities originate from the substituent group (-C6H5 and -CH3) of beta-diketonate coligands in the differences between steric hindrance and electron-donating effect. Additionally, the luminescence properties of 1, 3, 7, and 9 were investigated.

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