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Syntheses, characterization, and luminescent properties of four alkaline earth metal-organic frameworks based on two similar N-containing carboxylates

机译:基于两种相似的含氮羧酸盐的四种碱土金属-有机骨架的合成,表征和发光性质

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Four coordination polymers ([Ca(3-pa)(2)(H2O)(2)]center dot 3H(2)O) (1), ([Sr(3-pa)(2)(H2O)(2)]center dot 3H(2)O} (2), {[Ca(4-pa)(2)(H2O)(4)]} (3) and ([Sr(4-pa)(H2O)(6)]center dot[4-pa]} (4), (3-pa = pyridine-3-carboxylate, 4-pa = pyridine-4-carboxylate) have been synthesized and structurally characterized. Lots of noncovalent interactions were found in the four compounds, aiding the formation of high-dimensional architectures from the low-dimensional structures. Complex I and 2 feature similar I-D chain structures, which adopt face-to-face orientation to form an interesting 2-D network with pipe-like motif. Chain-like water clusters consisting of infinite tetragonal unit are trapped and stabled in the vacuums of the pipelines. The 2-D sheets are further connected into 3-D architecture by noncovalent interactions. Complex 3 has a discrete mononuclear structure, which is further connected into a 3-D framework by hydrogen bonds and pi center dot center dot center dot pi interactions. In complex 4, the zigzag-like chain structure units are parallel to each other and pack in ABAB mode to give rise to a 2-D network, which is stabled by pi center dot center dot center dot pi stacking and hydrogen bonds. The counteranions in 4 are hosted between the nets and act as "glue" linking the 2-D networks into a 3-D architecture. In addition, the photoluminescence properties of the compounds have been investigated.
机译:四种配位聚合物([Ca(3-pa)(2)(H2O)(2)]中心点3H(2)O)(1),([Sr(3-pa)(2)(H2O)(2) ]中心点3H(2)O}(2),{[Ca(4-pa)(2)(H2O)(4)]}(3)和([Sr(4-pa)(H2O)(6)合成了[中心] [4-pa]}(4),(3-pa =吡啶-3-羧酸盐,4-pa =吡啶-4-羧酸盐),在这四个化合物中发现了许多非共价相互作用化合物I和2具有相似的ID链结构,这些ID链通过面对面定向形成具有管状主题的有趣的二维网络,从而帮助从低维结构形成高维体系结构。由无限四方单元组成的类水团簇被捕获并稳定在管道的真空中,二维片材通过非共价相互作用进一步连接成3-D结构,复合物3具有离散的单核结构,并进一步连接成通过氢键和pi中心点pi中心点pi相互作用形成的3-D框架。配合物4,之字形链结构单元彼此平行并以ABAB模式堆积以形成一个二维网络,该二维网络通过pi中心点中心点中心点pi堆积和氢键稳定。 4中的抗衡离子位于网络之间,并充当将2D网络连接到3D体系结构的“胶水”。另外,已经研究了化合物的光致发光性质。

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