Citation: CHEN Hui, MA Cheng-Bing, CHEN Chang-Neng. Synthesis and Crystal Structure of a 2D Cu Framework Constructed from Dinuclear Building Units[J]. Chinese Journal of Structural Chemistry, ;2014, 33(12): 1807-1812. doi: 10.14102/j.cnki.0254-5861.2011-0359
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A novel 2D Cu coordination polymer [Cu4(pca)4(H2O)2(DMSO)2·2DMSO·2H2O]n (2, H2pca=pyrazole-3-carboxylic acid) has been prepared by dissolving a dinuclear Cu complex Cu2(py)3(pca)2(H2O)·(H2O) (1) in DMSO solution and structurally characterized by X-ray diffraction. The polymer crystallizes in space group P1, with a=9.538(3), b=9.714(3), c=10.765(3)Å, α=86.492(6), β=84.007(7), γ=82.592(6)°, Mr=1079.04, V=982.4(5)Å3, Z=1, Dc=1.824 g/cm3, μ=2.425 mm-1 and F(000)=548. The final refinement gave R=0.0785 and wR=0.1940 for 2787 reflections with I>2σ(I). The structure of 2 consists of Cu4(pca)4(H2O)2(DMSO)2·2DMSO·2H2O units, which can be viewed as two dinuclear subunits of Cu2(pca)2(H2O)2 and Cu2(pca)2(DMSO)2 connected to each other alternately, with solvent DMSO and H2O molecules around. The framework features a grid-like topology, with the walls of the grids composed of Cu4(pca)4 units, and the coordinated solvent molecules trapped in the grids.
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Keywords:
- copper,
- coordination polymer,
- crystal structure,
- building block
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