Guo Yanling, Dou Wei, Zhou Xiaoyan, Liu Weisheng, Qin Wenwu, Zang Zhipeng, Zhang Hongrui, Wang Daqi
College of Chemistry and Chemical Engineering and State Key Laboratory of Applied Organic Chemistry, Lanzhou University, Lanzhou 730000, China.
Inorg Chem. 2009 Apr 20;48(8):3581-90. doi: 10.1021/ic802060e.
To explore how nonplanar conformational distortions affect supramolecular self-assembly and properties of lanthanide complexes, we have designed and synthesized two new flexible exo-bidentate ligands derived from biphenol featuring two salicylamide pendant arms, 2,2'-bis{[(2'-benzylaminoformyl)phenoxyl]ethoxyl}-1,1'-biphenylene (L(I)) and 5,5'-dibromo-2,2'-bis{[(2'-benzylaminoformyl)phenoxyl]ethoxyl}-1,1'-biphenylene (L(II)). These two structurally related ligands can have different conformations and are used for constructing diverse lanthanide polymers with interesting luminescence properties. Among two series of lanthanide nitrate complexes which have been characterized by elemental analysis, X-ray powder diffraction, and IR spectroscopy, four new coordination polymers have been determined using X-ray diffraction analysis. The coordination polymer type {Ln(2)(NO(3))(6)(L(I))(3).3H(2)O}(infinity) (Ln = Nd, Sm, Eu, Gd, Tb or Dy) displays a two-dimensional honeycomb-like framework in the ab plane, which can be regarded as a (6,3) topological network with neodymium atoms acting as "three-connected" centers. In contrast, the coordination polymer types {[Nd(NO(3))(3)(L(II))(CH(3)OH)] x CH(3)OH}(infinity) and Ln(NO(3))(3)(L(II))(C(2)H(5)OH) (Ln = Sm, Eu, Gd, Tb or Dy) possess single-stranded helix chains which can be further connected through intermolecular hydrogen bonds to form two-dimensional supramolecular sheets. The photophysical properties of trivalent Sm, Eu, Tb, and Dy complexes at room temperature were investigated. The present work substantiates the claim that the supramolecular structure as well as the luminescence properties of the coordination polymer can be tuned by controlling the conformational distortion of a nonplanar flexible ligand in the supramolecular self-assembly.
为了探究非平面构象畸变如何影响镧系配合物的超分子自组装和性质,我们设计并合成了两种新型的柔性外双齿配体,它们衍生自具有两个水杨酰胺侧臂的联苯酚,即2,2'-双{[(2'-苄基氨基甲酰基)苯氧基]乙氧基}-1,1'-联苯撑(L(I))和5,5'-二溴-2,2'-双{[(2'-苄基氨基甲酰基)苯氧基]乙氧基}-1,1'-联苯撑(L(II))。这两种结构相关的配体可以具有不同的构象,并用于构建具有有趣发光性质的多种镧系聚合物。在通过元素分析、X射线粉末衍射和红外光谱表征的两系列硝酸镧配合物中,使用X射线衍射分析确定了四种新的配位聚合物。配位聚合物类型{Ln(2)(NO(3))(6)(L(I))(3).3H(2)O}(infinity)(Ln = Nd、Sm、Eu、Gd、Tb或Dy)在ab平面上显示出二维蜂窝状框架,其可被视为一种(6,3)拓扑网络,其中钕原子充当“三连接”中心。相比之下,配位聚合物类型{[Nd(NO(3))(3)(L(II))(CH(3)OH)] x CH(3)OH}(infinity)和Ln(NO(3))(3)(L(II))(C(2)H(5)OH)(Ln = Sm、Eu、Gd、Tb或Dy)具有单链螺旋链,其可通过分子间氢键进一步连接以形成二维超分子片。研究了三价Sm、Eu、Tb和Dy配合物在室温下的光物理性质。目前的工作证实了这样的观点,即配位聚合物的超分子结构以及发光性质可以通过在超分子自组装中控制非平面柔性配体的构象畸变来调节。