Departament de Nanociència Molecular i Materials Orgànics, Institut de Ciència de Materials de Barcelona, Campus de la UAB, 08193 Bellaterra, Spain.
Chemistry. 2011 Mar 21;17(13):3644-56. doi: 10.1002/chem.201002993. Epub 2011 Mar 1.
A series of isostructural open-framework coordination polymers formulated as [Ln(dmf)(3)(ptmtc)] (Ln = Sm (1), Eu (2), Gd (3), Tb (4), Dy (5); PTMTC = polychlorotriphenylmethyl tricarboxylate) and [Ln(dmf)(2)H(2)O(αH-ptmtc)] (Ln = Sm (1'), Eu (2'), Gd (3'), Tb (4'), Dy (5')) have been obtained by treating Ln(III) ions with PTMTC ligands with a radical (PTMTC(3-)) or a closed-shell character (αH-PTMTC(3-)). X-ray diffraction analyses reveal that these coordination polymers possess 3D architectures that combine large channels and fairly rare lattice complex T connectivity. In addition, these compounds show selective framework dynamic sorption properties. For both classes of ligands, the ability to act as an antenna in Ln sensitization processes has been investigated. No luminescence was observed for compounds 1-5, and 3' because of the PTMTC(3-) ligand and/or Gd(III) ion characteristics. Conversely, photoluminescence measurements show that 1', 2', 4', and 5' emit dark orange, red, green, and dark cyan metal-centered luminescence. The magnetic properties of all of these compounds have been investigated. The nature of the {Ln-radical} exchange interaction in these compounds has been assessed by comparing the behavior of the radical-based coordination polymers 1-5 with those of the compounds with the diamagnetic ligand set. While antiferromagnetic {Sm-radical} interactions are found in 1, ferromagnetic {Ln-radical} interactions propagate in the 3D architectures of 3, 4, and 5 (Ln = Gd, Tb, and Dy, respectively). This procedure also provided access to information on the {Ln-Ln} exchange existing in these magnetic systems.
一系列结构相同的开放式骨架配位聚合物,其结构式为[Ln(dmf)(3)(ptmtc)](Ln = Sm(1),Eu(2),Gd(3),Tb(4),Dy(5);PTMTC = 多氯三苯甲基三羧酸酯)和[Ln(dmf)(2)H(2)O(αH-ptmtc)](Ln = Sm(1'),Eu(2'),Gd(3'),Tb(4'),Dy(5')),是通过用自由基(PTMTC(3-))或闭壳层特性(αH-PTMTC(3-))的 PTMTC 配体处理 Ln(III)离子得到的。X 射线衍射分析表明,这些配位聚合物具有 3D 架构,结合了大通道和相当罕见的晶格复杂 T 连接。此外,这些化合物表现出选择性的框架动态吸附特性。对于这两类配体,研究了它们在 Ln 敏化过程中作为天线的能力。由于 PTMTC(3-)配体和/或 Gd(III)离子的特性,化合物 1-5 和 3'没有观察到发光。相反,光致发光测量表明,1'、2'、4'和 5'发射深橙色、红色、绿色和深青色金属中心发光。这些化合物的磁性特性已经被研究过了。通过比较基于自由基的配位聚合物 1-5 和具有抗磁性配体的化合物的行为,评估了这些化合物中{Ln-自由基}交换相互作用的性质。虽然在 1 中发现了反铁磁{Sm-自由基}相互作用,但在 3、4 和 5(Ln = Gd、Tb 和 Dy)的 3D 架构中,存在铁磁{Ln-自由基}相互作用。这种方法还提供了关于这些磁系统中存在的{Ln-Ln}交换的信息。