Department of Chemistry and MacDiarmid Institute for Advanced Materials and Nanotechnology, University of Otago, PO Box 56, Dunedin, New Zealand.
Dalton Trans. 2011 Nov 21;40(43):11425-32. doi: 10.1039/c1dt11038a. Epub 2011 Sep 21.
A family of thirteen tetranuclear heterometallic zinc(II)-lanthanide(III) complexes of the hexa-imine macrocycle (L(Pr))(6-), with general formula Zn(II)(3)Ln(III)(L(Pr))(NO(3))(3)·xsolvents (Ln = La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm or Yb), were prepared in a one-pot synthesis using a 3:1:3:3 reaction of zinc(II) acetate, the appropriate lanthanide(III) nitrate, the dialdehyde 1,4-diformyl-2,3-dihydroxybenzene (H(2)L(1)) and 1,3-diaminopropane. A hexanuclear homometallic zinc(II) macrocyclic complex [Zn(6)(L(Pr))(OAc)(5)(OH)(H(2)O)]·3H(2)O was obtained using a 2:0:1:1 ratio of the same reagents. A control experiment using a 1:0:1:1 ratio failed to generate the lanthanide-free [Zn(3)(L(Pr))] macrocyclic complex. The reaction of H(2)L(1) and zinc(II) acetate in a 1:1 ratio yielded the pentanuclear homometallic complex of the dialdehyde H(2)L(1), [Zn(5)(L(1))(5)(H(2)O)(6)]·3H(2)O. An X-ray crystal structure determination revealed Zn(3)(II)Pr(III)(L(Pr))(NO(3))(2)(DMF)(3)·0.9DMF has the large ten-coordinate lanthanide(III) ion bound in the central O(6) site with two bidentate nitrate anions completing the O(10) coordination sphere. The three square pyramidal zinc(II) ions are in the outer N(2)O(2) sites with a fifth donor from DMF. Measurement of the magnetic properties of [Zn(II)(3)Dy(III)(L(Pr))(NO(3))(3)(MeOH)(3)]·4H(2)O with a weak external dc field showed that it has a frequency-dependent out-of-phase component of ac susceptibility, indicative of slow relaxation of the magnetization (SMM behaviour). Likewise, the Er and Yb analogues are field-induced SMMs; the latter is only the second example of a Yb-based SMM. The neodymium, ytterbium and erbium complexes are luminescent in the solid phase, but only the ytterbium and neodymium complexes show strong lanthanide-centred luminescence in DMF solution.
一个由十三核四核异金属锌(II)-镧系(III)配合物组成的六亚胺大环(L(Pr))(6-)家族,通式为 Zn(II)(3)Ln(III)(L(Pr))(NO(3))(3)·xsolvents(Ln = La,Ce,Pr,Nd,Sm,Eu,Gd,Tb,Dy,Ho,Er,Tm 或 Yb),通过锌(II)醋酸盐,适当的镧系(III)硝酸盐,1,4-二醛 1,4-二甲醛-2,3-二羟基苯(H(2)L(1))和 1,3-二氨基丙烷的 3:1:3:3 反应在一锅合成中制备。使用相同试剂的 2:0:1:1 比例获得六核同金属锌(II)大环配合物[Zn(6)(L(Pr))(OAc)(5)(OH)(H(2)O)]·3H(2)O。使用 1:0:1:1 的比例进行的对照实验未能产生无镧系的[Zn(3)(L(Pr))]大环配合物。H(2)L(1)和锌(II)醋酸盐的反应以 1:1 的比例生成二醛 H(2)L(1)的五核同金属配合物,[Zn(5)(L(1))(5)(H(2)O)(6)]·3H(2)O。X 射线晶体结构测定表明[Zn(3)(II)Pr(III)(L(Pr))(NO(3))(2)(DMF)(3)](NO(3))·0.9DMF 具有大的十配位镧系(III)离子结合在中心 O(6)位,两个双齿硝酸根阴离子完成 O(10)配位球。三个正方形金字塔形锌(II)离子位于外部 N(2)O(2)位,第五个供体来自 DMF。用弱直流外磁场测量[Zn(II)(3)Dy(III)(L(Pr))(NO(3))(3)(MeOH)(3)]·4H(2)O 的磁性性质表明,它具有与频率相关的反相分量的交流磁化率,表明磁化率缓慢弛豫(SMM 行为)。同样,铒和镱类似物是场诱导的 SMM;后者是第二个基于镱的 SMM 实例。钕,镱和铒配合物在固态下是发光的,但只有镱和钕配合物在 DMF 溶液中显示出强烈的镧系中心发光。