Issue 18, 2011

Hydrothermal synthesis, structures, and luminescent properties of zinc(ii) and cadmium(ii) phosphonates with a 3D framework structure using terephthalate as second linkers

Abstract

By introduction of 1,4-benzenedicarboxylic acid as a second organic ligand, two new divalent metal(II) phosphonates with a 3D framework structure, namely, [Zn(HL1)(bdc)0.5] (1) and [Cd1.5(HL2)(bdc)0.5] (2) (H2L1 = H2O3PCH(NH2)C6H5, H3L2 = H2O3PCH2–NC5H9–COOH, H2bdc = HOOCC6H4COOH), have been synthesized under hydrothermal conditions. The two compounds show three-dimensional (3D) framework structure with infinite two-dimensional (2D) networks pillared by H2bdc. For compound 1, the {ZnO4} polyhedra are interconnected by phosphonate groups into a 2D layer, and the adjacent layers are further cross-linked via the bdc2 anions to generate a three-dimensional framework structure with two types of channel system along the c-axis. A notable feature of compound 1 is the presence of alternate left- and right-handed helical chains in the structure. In compound 2, the inorganic chains, composed of {Cd(1)O7}, {Cd(2)O4} and {CPO3} polyhedra, are linked by HL22 ligands to form a double layer structure in the ab plane, and the adjacent layers are further linked by the bdc2 anions to form a 3D framework structure with one-dimensional channel systems along the a-axis. Luminescence properties of compounds 1 and 2 have also been studied.

Graphical abstract: Hydrothermal synthesis, structures, and luminescent properties of zinc(ii) and cadmium(ii) phosphonates with a 3D framework structure using terephthalate as second linkers

Supplementary files

Article information

Article type
Paper
Submitted
28 Nov 2010
Accepted
25 Feb 2011
First published
31 Mar 2011

Dalton Trans., 2011,40, 5059-5065

Hydrothermal synthesis, structures, and luminescent properties of zinc(II) and cadmium(II) phosphonates with a 3D framework structure using terephthalate as second linkers

F. Tong, Z. Sun, K. Chen, Y. Zhu, W. Wang, C. Jiao, C. Wang and C. Li, Dalton Trans., 2011, 40, 5059 DOI: 10.1039/C0DT01649G

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