Switlicka A, Machura B, Kruszynski R, Cano J, Toma L M, Lloret F, Julve M
Department of Crystallography, Institute of Chemistry, University of Silesia, 9th Szkolna St., 40-006 Katowice, Poland.
Dalton Trans. 2018 Apr 24;47(16):5831-5842. doi: 10.1039/c7dt04735e.
Three, mononuclear complexes of the formula [Co(bmim)2(SCN)2] (1), [Co(bmim)2(NCO)2] (2) and [Co(bmim)2(N3)2] (3) [bmim = 1-benzyl-2-methylimidazole] were prepared and structurally analyzed by single-crystal X-ray crystallography. The cobalt(ii) ions in 1-3 are tetrahedrally coordinated with two bmim molecules and two pseudohalide anions. The angular distortion parameter δ was calculated and the SHAPE program (based on the CShM concept) was used for 1-3 to estimate the angular distortion from an ideal tetrahedron. The molecules of 1-3 are effectively separated, and the values of the shortest distance of cobalt-cobalt are 8.442(6) and 6.774(8) Å for 1, 10.349(8) and 10.716(8) Å for 2 and 6.778(1) and 9.232(1) Å for 3. Direct current (dc) magnetic susceptibility measurements on the crushed crystals of 1-3 were carried out in the temperature range 1.9-295 K. The variable-temperature magnetic data of 1-3 mainly obey the zero-field splitting effect (D) of the 4A2 ground term of the tetrahedral cobalt(ii) complexes (2D being the energy gap between the |±1/2 and |±3/2 levels of the spin). The analysis of their magnetic data through the Hamiltonian H = D[S2z - S(S + 1)/3] + E(Sx2 - Sy2) + gβHS led to the following best-fit parameters: g = 2.29, D = -7.5 cm-1 and E/D = 0.106 (1), g = 2.28, D = + 6.3 cm-1 and E/D = 0.007 (2) and g = 2.36, D = + 6.7 cm-1 and E/D = 0.090 (3). The signs of D for 1-3 were confirmed by Q-band EPR spectra on powdered samples in the temperature range 4.0-20 K. Field-induced SIM behaviour was observed for 1-3 below 4.0 K, and the frequency-dependent maxima of χ''M were observed for 1 and only incipient signals of χ''M occurred for 2 and 3. The values of the exponential factor (τ0) and activation energy (Ea) for 1-3 which were obtained from the Arrhenius plot suggest a single relaxation process characteristic of an Orbach mechanism.
制备了三种通式为[Co(bmim)2(SCN)2] (1)、[Co(bmim)2(NCO)2] (2)和[Co(bmim)2(N3)2] (3)的单核配合物[bmim = 1-苄基-2-甲基咪唑],并通过单晶X射线晶体学对其进行了结构分析。1-3中的钴(II)离子与两个bmim分子和两个拟卤阴离子呈四面体配位。计算了角畸变参数δ,并使用SHAPE程序(基于CShM概念)对1-3进行分析,以估计与理想四面体的角畸变。1-3的分子有效分离,对于1,钴-钴最短距离的值为8.442(6) Å和6.774(8) Å,对于2为10.349(8) Å和10.716(8) Å,对于3为6.778(1) Å和9.232(1) Å。在1.9 - 295 K的温度范围内对1-3的压碎晶体进行了直流(dc)磁化率测量。1-3的变温磁性数据主要遵循四面体钴(II)配合物4A2基态的零场分裂效应(D)(2D为自旋的|±1/2和|±3/2能级之间的能隙)。通过哈密顿量H = D[S2z - S(S + 1)/3] + E(Sx2 - Sy2) + gβHS对其磁性数据进行分析,得到以下最佳拟合参数:g = 2.29,D = -7.5 cm-1,E/D = 0.106 (1);g = 2.28,D = + 6.3 cm-1,E/D = 0.007 (2);g = 2.36,D = + 6.7 cm-1,E/D = 0.090 (3)。在4.0 - 20 K的温度范围内,通过对粉末样品的Q波段EPR光谱证实了1-3中D的符号。在4.0 K以下观察到1-3的场诱导慢磁弛豫行为,对于1观察到χ''M的频率依赖性最大值,对于2和3仅出现χ''M的初始信号。从阿伦尼乌斯图获得的1-3的指数因子(τ0)和活化能(Ea)值表明存在一个特征为奥巴赫机制的单一弛豫过程。