Gao Feng, Yang Feng-Lei, Zhu Guang-Zhou, Zhao Yue
School of Chemistry and Chemical Engineering, Jiangsu Key Laboratory of Green Synthetic Chemistry for Functional Materials, Jiangsu Normal University, Xuzhou 221116, P. R. China.
State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing National Laboratory of Microstructures, Nanjing University, Nanjing 210093, P. R. China.
Dalton Trans. 2015 Dec 14;44(46):20232-41. doi: 10.1039/c5dt03580e.
The first two families of homodinuclear lanthanide(III) complexes, formulated as [(L(OEt))2Ln2(L1)] and [(LOEt)2Ln2(L2)] (Ln(3+) = Dy(3+), Tb(3+), Ho(3+), Gd(3+), and Y(3+); L1(4-) = 2,2',2'',2'''-[1,2,4,5-benzenetetrayltetrakis(nitrilomethylidyne)]tetrakisphenolate; L2(4-) = 2,2',2'',2'''-[[1,1'-biphenyl]-3,3',4,4'-tetrayltetrakis(nitrilomethylidyne)]tetrakis(4-chlorophenolate); L(OEt)(-) = (η(5)-cyclopentadienyl)tris(diethylphosphito-p)cobaltate(III)), were successfully synthesized based on Kläui's tripodal building block NaL(OEt) and two dinucleating Schiff base ligands, H(4)L1 and H(4)L2, respectively. Single-crystal X-ray analyses show that these lanthanide complexes have two seven-coordinated metal binding sites, linked to each other with a phenyl or biphenyl bridge. Variable temperature dc magnetic measurements reveal the weakly antiferromagnetic coupling between paramagnetic lanthanide ions, while ac magnetic data exhibit the field-induced relaxation of magnetization for the corresponding Dy2 complexes 1 and 6. A further magnetic dilution study for 1 suggests that the slow magnetic relaxation originates from the single-ion magnetic behaviour of Dy(3+) ions.
基于克劳伊的三脚架结构单元NaL(OEt)以及两种双核席夫碱配体H(4)L1和H(4)L2,分别成功合成了前两类同双核镧系(III)配合物,其化学式分别为[(L(OEt))2Ln2(L1)]和[(LOEt)2Ln2(L2)](Ln(3+) = Dy(3+)、Tb(3+)、Ho(3+)、Gd(3+)和Y(3+);L1(4-) = 2,2',2'',2'''-[1,2,4,5-苯四甲撑四(次氮基甲基idyne)]四(酚盐);L2(4-) = 2,2',2'',2'''-[[1,1'-联苯]-3,3',4,4'-四甲撑四(次氮基甲基idyne)]四(4-氯酚盐);L(OEt)(-) = (η(5)-环戊二烯基)三(二乙基亚磷酸酯-p)钴酸盐(III))。单晶X射线分析表明,这些镧系配合物有两个七配位的金属结合位点,通过苯基或联苯桥相互连接。变温直流磁性测量揭示了顺磁性镧系离子之间的弱反铁磁耦合,而交流磁性数据显示了相应的Dy2配合物1和6的场致磁化弛豫。对1的进一步磁性稀释研究表明,缓慢的磁弛豫源于Dy(3+)离子的单离子磁行为。