Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur-208016, India.
Inorg Chem. 2013 Apr 15;52(8):4554-61. doi: 10.1021/ic400073y. Epub 2013 Apr 4.
The reaction of the multisite coordination ligand (LH4) with CoX2·nH2O in the presence of tetrabutylammonium hydroxide affords a series of homometallic dinuclear mixed-valence complexes, Co(III)Co(II)(LH2)2(X)(H2O)m (1, X = Cl and m = 4; 2, X = Br and m = 4; 3, X = NO3 and m = 3). All of the complexes have been structurally characterized by X-ray crystallography. Both cobalt ions in these dinuclear complexes are present in a distorted-octahedral geometry. Detailed magnetic studies on 1-3 have been carried out. M vs H data at different temperatures can be fitted with S = 3/2, the best fit leading to D(3/2) = -7.4 cm(-1), |E/D| < 1 × 10(-3), and g = 2.32 for 1 and D(3/2) = -9.7 cm(-1), |E/D| <1 × 10(-4), and g = 2.52 for 2. In contrast to 1 and 2, M vs H data at different temperatures suggest that compound 3 has comparatively little magnetic anisotropy. In accordance with the large negative D values observed for compounds 1 and 2, they are single-molecule magnets (SMMs) and exhibit slow relaxation of magnetization at low temperatures under an applied magnetic field of 1000 Oe with the following energy barriers: 7.9 cm(-1) (τo = 6.1 × 10(-6) s) for 1 and 14.5 cm(-1) (τo = 1.0 × 10(-6) s) for 2. Complex 3 does not show any SMM behavior, as expected from its small magnetic anisotropy. The τo values observed for 1 and 2 are much larger than expected for a SMM, strongly suggesting that the quantum pathway of relaxation at very low temperatures is not fully suppressed by the effects of the applied field.
多配位配体 (LH4) 与 CoX2·nH2O 在四丁基氢氧化铵存在下的反应得到一系列同双核混合价配合物,Co(III)Co(II)(LH2)2(X)(H2O)m(1,X = Cl 和 m = 4;2,X = Br 和 m = 4;3,X = NO3 和 m = 3)。所有配合物均通过 X 射线晶体学进行了结构表征。这些双核配合物中的两个钴离子均处于扭曲八面体几何形状中。对 1-3 进行了详细的磁性研究。不同温度下的 M 与 H 数据可以拟合为 S = 3/2,最佳拟合导致 D(3/2) = -7.4 cm(-1),|E/D| < 1 × 10(-3),g = 2.32 用于 1 和 D(3/2) = -9.7 cm(-1),|E/D| <1 × 10(-4),g = 2.52 用于 2。与 1 和 2 相反,不同温度下的 M 与 H 数据表明化合物 3 的磁各向异性相对较小。与观察到的大负 D 值相对应,化合物 1 和 2 是单分子磁体 (SMM),在施加 1000 Oe 的磁场下,低温下的磁化缓慢弛豫,具有以下能垒:7.9 cm(-1)(τo = 6.1 × 10(-6) s)用于 1 和 14.5 cm(-1)(τo = 1.0 × 10(-6) s)用于 2。化合物 3 没有表现出任何 SMM 行为,这与其较小的磁各向异性相符。对于 1 和 2 观察到的 τo 值远大于 SMM 的预期值,这强烈表明在极低温度下,弛豫的量子途径并未完全被施加磁场的影响所抑制。