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Synthesis, crystal structure, and properties of hybrid-3D copper tetraphosphonate: [Cu3((HO3PCH2)2N–CH2C6H4CH2–N(CH2PO3H)2)(H2O)4] n

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Abstract

The new copper(II) tetraphosphonate, [Cu3(HO3PCH2)2N–CH2C6H4CH2–N(CH2PO3H)2)(H2O)4] n (1) was hydrothermally synthesized from the reaction of Cu(NO3)2 and (H2O3PCH2)2N–CH2C6H4CH2–N(CH2PO3H2)2, (H8L). Compound 1 was structurally characterized by means of X-ray single crystal diffraction. The structure of 1 showed a 3D structure constructed from two types of Cu(II) and chelating and bridging modes of (HO3PCH2)2N–CH2C6H4CH2–N(CH2PO3H)2, and features a (44.610.8) topological network. The 3D compound is further stabilized by hydrogen bonds. UV–Vis diffuse reflectance and infrared spectroscopy as well as elemental analysis of compound 1 are also presented.

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Acknowledgments

Financial support by the Alzahra University is gratefully acknowledged.

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Correspondence to Saeed Dehghanpour.

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Dehghanpour, S., Rezazadeh, M., Mahmoudi, A. et al. Synthesis, crystal structure, and properties of hybrid-3D copper tetraphosphonate: [Cu3((HO3PCH2)2N–CH2C6H4CH2–N(CH2PO3H)2)(H2O)4] n . J IRAN CHEM SOC 11, 751–757 (2014). https://doi.org/10.1007/s13738-013-0348-8

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