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基于杂核六核稀土配合物的配位聚合物:实现独立的发光亮度和颜色调谐。

Coordination polymers based on heterohexanuclear rare earth complexes: toward independent luminescence brightness and color tuning.

机构信息

Université européenne de Bretagne, Rennes, France.

出版信息

Inorg Chem. 2013 Jun 3;52(11):6720-30. doi: 10.1021/ic4008697. Epub 2013 May 21.

Abstract

Reactions in solvothermal conditions between hexanuclear rare earth complexes and H2bdc, where H2bdc symbolizes terephthalic acid, lead to a family of monodimensional coordination polymers in which hexanuclear complexes act as metallic nodes. The hexanuclear cores can be either homometallic with general chemical formula Ln6O(OH)8(NO3)6 (Ln = Pr-Lu plus Y) or heterometallic with general chemical formula Ln(6x)Ln'(6-6x)O(OH)8(NO3)6 (Ln and Ln' = Pr-Lu plus Y). Whatever the hexanuclear entity is, the resulting coordination polymer is iso-structural to [Y6O(OH)8(NO3)2(bdc)(Hbdc)2·2NO3·H2bdc]∞, a coordination polymer that we have previously reported. The random distribution of the lanthanide ions over the six metallic sites of the hexanuclear entities is demonstrated by (89)Y solid state NMR, X-ray diffraction (XRD), and luminescent measurements. The luminescent and colorimetric properties of selected compounds that belong to this family have been studied. These studies demonstrate that some of these compounds exhibit very promising optical properties and that there are two ways of modulating the luminescent properties: (i) playing with the composition of the heterohexanuclear entities or (ii) playing with the relative ratio between two different hexanuclear entities. This enables the independent tuning of luminescence intensity and color.

摘要

在溶剂热条件下,六核稀土配合物与 H2bdc(表示对苯二甲酸)之间的反应导致了一系列一维配位聚合物的形成,其中六核配合物作为金属节点。六核核心可以是同核的,具有通式 Ln6O(OH)8(NO3)6(Ln = Pr-Lu 加 Y),也可以是杂核的,具有通式 Ln(6x)Ln'(6-6x)O(OH)8(NO3)6(Ln 和 Ln' = Pr-Lu 加 Y)。无论六核实体是什么,得到的配位聚合物都与 [Y6O(OH)8(NO3)2(bdc)(Hbdc)2·2NO3·H2bdc]∞同构,这是我们之前报道过的一种配位聚合物。(89)Y 固态 NMR、X 射线衍射(XRD)和发光测量证明了镧系元素离子在六核实体的六个金属位点上的随机分布。对属于该系列的选定化合物的发光和比色性质进行了研究。这些研究表明,这些化合物中的一些表现出非常有前途的光学性质,并且有两种调节发光性质的方法:(i) 玩杂核六核实体的组成,或(ii) 玩两种不同的六核实体之间的相对比例。这使得可以独立调节发光强度和颜色。

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