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首页> 外文期刊>CrystEngComm >Syntheses, structures, luminescence and molecular recognition properties of four new cadmium carboxyphosphonates with 2D layered and 3D supramolecular structures
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Syntheses, structures, luminescence and molecular recognition properties of four new cadmium carboxyphosphonates with 2D layered and 3D supramolecular structures

机译:具有2D层状和3D超分子结构的四种新型羧基膦酸镉的合成,结构,发光和分子识别特性

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摘要

Four new cadmium carboxyphosphonates with 2D layered and 3D supramolecular structures, namely, Cd-3[(4-cppH)(2)(4-cppH(2))(2)] (1), Cd[(2,2'-bipy)(4-cppH)] (2), [Cd-3(1,10-phen)(3)(4-cpp)(2)]center dot 6H(2)O (3)and [Cd(4,4'-bipy)(4-cppH)(H2O)(2)]center dot 2H(2)O (4)(4-cppH(3) = 4-carboxyphenylphosphonic acid, 2,2'-bipy = 2,2'-bipyridine, 1,10-phen = 1,10-phenanthroline and 4,4'-bipy = 4,4'-bipyridine), were synthesized under hydrothermal conditions. In compound 1, {Cd(1)O-6}, {Cd(2)O-6}, {Cd(3)O-6} and {CPO3} polyhedra form a layer in the ab plane via edge-and corner-sharing. Neighboring layers assemble into a 3D supramolecular network by hydrogen bonding interactions. The structure of compound 2 shows a new layered structure, in which the interconnection of two {Cd(1)O4N2} and two {CPO3} polyhedra via corner-sharing forms a tetranuclear cluster, and the so-built tetranuclear clusters are bridged by phosphonate ligands into a 2D layer. For compound 3, {Cd(1)O4N2}, {Cd(2)O4N2}, {Cd(3)O3N2} and {CPO3} polyhedra are interconnected by carboxyphosphonate ligands to a 2D layer in the ac plane. Then the adjacent layers are further assembled into a 3D supramolecular structure through pi-pi stacking interactions. Cd(II)ions in compound 4 are bridged by 4,4'-bipy molecules into layers in the ab plane. These layers are held together by hydrogen bonds into a 3D supramolecular structure. The thermal stabilities and luminescence properties of compounds 1-4 were investigated. Interestingly, compound 1 is selective and reversible for sensing of DMF and acetone.
机译:具有2D层状和3D超分子结构的四种新的羧基膦酸镉,即Cd-3 [(4-cppH)(2)(4-cppH(2))(2)](1),Cd [(2,2'- bipy)(4-cppH)](2),[Cd-3(1,10-phen)(3)(4-cpp)(2)]中心点6H(2)O(3)和[Cd(4 ,4'-bipy)(4-cppH)(H2O)(2)]中心点2H(2)O(4)(4-cppH(3)= 4-羧苯基膦酸,2,2'-bipy = 2,在水热条件下合成了2'-联吡啶,1,10-phen = 1,10-菲咯啉和4,4'-bipy = 4,4'-联吡啶。在化合物1中,{Cd(1)O-6},{Cd(2)O-6},{Cd(3)O-6}和{CPO3}多面体通过边缘和拐角在ab平面中形成一层共享。相邻的层通过氢键相互作用组装成3D超分子网络。化合物2的结构显示了一种新的层状结构,其中两个{Cd(1)O4N2}和两个{CPO3}多面体通过角共享相互连接形成一个四核簇,而如此形成的四核簇被膦酸酯桥接配体变成2D层对于化合物3,{Cd(1)O4N2},{Cd(2)O4N2},{Cd(3)O3N2}和{CPO3}多面体通过羧基膦酸酯配体互连到ac平面中的2D层。然后,相邻层通过pi-pi堆叠相互作用进一步组装为3D超分子结构。化合物4中的Cd(II)离子被4,4'-bipy分子桥接成ab平面中的层。这些层通过氢键保持在一起,形成3D超分子结构。研究了化合物1-4的热稳定性和发光性质。有趣的是,化合物1对DMF和丙酮的检测具有选择性和可逆性。

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