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Solvent-Controlled Assembly of Manganese(II) Tetrachloroterephthalates with 1D Chain, 2D Layer, and 3D Coordination Architectures.

Authors :
Sheng-Chun Chen
Zhi-Hui Zhang
Kun-Lin Huang
Ming-Yang He
Ai-Jun Cui
Chao Li
Qi Liu
Qun Chen
Miao Du
Source :
Crystal Growth & Design. Aug2008, Vol. 8 Issue 9, p3437-3445. 9p.
Publication Year :
2008

Abstract

With solvent molecules participating in coordination systems, four new Mn IIcoordination polymers of the rigid ligand 2,3,5,6-tetrachloro-1,4-benzenedicarboxylic acid (H 2BDC-Cl 4) have been obtained from different solvent media. Single-crystal X-ray analysis indicates that the coordination arrays of 1− 4vary from 1D fishbone or zigzag chain for 1or 2, 2D (4,4) layer for 3, to 3D SrAl 2coordination network for 4, respectively. In {[Mn(BDC-Cl 4)(py) 2(H 2O) 2](py) 2} n( 1) and {[Mn(BDC-Cl 4)(MeOH) 3](MeOH)} n( 2), pyridine/water (in 1) and MeOH (in 2) molecules act as the monodentate terminal ligands to fulfill the metal coordination spheres. In the case of {[Mn(BDC-Cl 4)(dioxane)(H 2O) 2](dioxane)} n( 3), the aqua ligand is monodentate and the dioxane moiety displays unusual bridging bidentate mode, whereas for [Mn 5(BDC-Cl 4) 5(DMF) 5] n( 4), three Mn IIcenters are connected by four BDC-Cl 4ligands and two DMF molecules to constitute a trimeric unit. These secondary units are extended to the final 3D network with SrAl 2( sra) topology. Significantly, the solvents play an essential role in the crystallization and construction of these coordination frameworks with distinct dimensionality and connectivity. The thermal and photoluminescence properties of complexes 1− 4in the solid state have also been discussed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15287483
Volume :
8
Issue :
9
Database :
Academic Search Index
Journal :
Crystal Growth & Design
Publication Type :
Academic Journal
Accession number :
34441100
Full Text :
https://doi.org/10.1021/cg8003905