Li Yan, Yu Jia-Wen, Liu Zhong-Yi, Yang En-Cui, Zhao Xiao-Jun
Department of Chemistry, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Nankai University , Tianjin 300071, People's Republic of China.
Inorg Chem. 2015 Jan 5;54(1):153-60. doi: 10.1021/ic501952b. Epub 2014 Dec 18.
Three new homometallic lanthanide complexes with mixed carboxylate-modified rigid ligands, [Ln(μ3-OH)(na)(pyzc)]n (na(-) = 1-naphtholate, pyzc(-) = 2-pyrazinecarboxylate, Ln = Dy (1), Yb (2), and Gd (3)), were solvothermally synthesized, and their structures and magnetic as well as photophysical properties were completely investigated. Complexes 1-3 are crystallographically isostructural, exhibiting linear chains with four bidentate bridging μ-COO(-) moieties encapsulated cubic {Ln4(μ3-OH)4}(8+) clusters repeatedly extended by 4-fold chelating-bridging-pyzc(-) connectors. Magnetically, the former two complexes with highly anisotropic Dy(III) and weak anisotropic Yb(III) ions in the distorted NO7 triangular dodecahedron coordination environment display field-induced slow relaxation of magnetization. Fitting the dynamic magnetic data to the Arrhenius law gives energy barrier ΔE/kB = 39.6 K and pre-exponential factor τo = 1.52 × 10(-8) s for 1 and ΔE/kB = 14.1 K and τo = 2.13 × 10(-7) s for 2. By contrast, complex 3 with isotropic Gd(III) ion and weak intracluster antiferromagnetic coupling shows a significant cryogenic magnetocaloric effect, with a maximum -ΔSm value of 30.0 J kg(-1) K(-1) at 2.5 K and 70 kOe. Additionally, the chromophoric na(-) and pyzc(-) ligands can serve as antenna groups, selectively sensitizing the Dy(III)- and Yb(III)-based luminescence of 1 and 2 in the UV-visible region by an intramolecular energy transfer process. Thus, complexes 1-3, incorporating field-induced slow magnetic magnetization and interesting luminescence together, can be used as composite magneto-optical materials. More importantly, these interesting results further demonstrate that the mixed-ligand system with rigid carboxylate-functionalized chromophores can be excellent candidates for the preparations of new bifunctional magneto-optical materials.
通过溶剂热法合成了三种具有混合羧酸盐修饰刚性配体的新型同金属镧系配合物[Ln(μ3-OH)(na)(pyzc)]n(na(-)=1-萘酚盐,pyzc(-)=2-吡嗪羧酸盐,Ln = Dy (1)、Yb (2) 和 Gd (3)),并对其结构、磁性质和光物理性质进行了全面研究。配合物1-3在晶体学上是同构的,呈现出具有四个双齿桥连μ-COO(-)部分的线性链,这些部分封装了立方{Ln4(μ3-OH)4}(8+)簇,并通过4-重螯合桥连-pyzc(-)连接器反复延伸。在磁性方面,前两种配合物在扭曲的NO7三角十二面体配位环境中分别含有高各向异性的Dy(III)离子和弱各向异性的Yb(III)离子,表现出磁场诱导的磁化缓慢弛豫。将动态磁性数据拟合到阿伦尼乌斯定律,得到1的能垒ΔE/kB = 39.6 K,预指数因子τo = 1.52×10(-8) s;2的能垒ΔE/kB = 14.1 K,τo = 2.13×10(-7) s。相比之下,具有各向同性Gd(III)离子和弱簇内反铁磁耦合的配合物3表现出显著的低温磁热效应,在2.5 K和70 kOe时最大-ΔSm值为30.0 J kg(-1) K(-1)。此外,发色团na(-)和pyzc(-)配体可以作为天线基团,通过分子内能量转移过程在紫外-可见区域选择性地敏化1和2中基于Dy(III)和Yb(III)的发光。因此,配合物1-3兼具磁场诱导的缓慢磁磁化和有趣的发光特性,可作为复合磁光材料。更重要的是,这些有趣的结果进一步证明,具有刚性羧酸盐功能化发色团的混合配体体系可以成为制备新型双功能磁光材料的优秀候选者。