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SYNTHESIS, CRYSTAL STRUCTURE AND MAGNETIC PROPERTY OF A NEW TWO-DIMENSIONAL {Co3} CLUSTERS COORDINATION POLYMER BASED ON PYRIDINE TETRA-CARBOXYLATE LIGAND


XIN FANG LIU 1*, XIAOKANG LIU 2, NINGNING MA 1, XIAO YU ZHANG 2, RONG FANG LI 1
1. Luoyang Normal University, College of Chemistry and Chemical Engineering, and Henan Key Laboratory of Function-Oriented Porous Materials, 471022, Luoyang, China
2. Henan University of Science and Technology, College of Food and Bioengineering, 471003, Luoyang, China
*Corresponding author: liuxinfang6@126.com

Issue:

SCSCC6, Volume XXI, No. 1

Section:

Volume 21, No. 1 (2020)

Abstract:

A novel 2D {Co3} clusters coordination polymer, [Co3(Hdppd)2(H2O)6]n (1) based on 3-(2,4-dicarboxylatephenyl)-2,6-pyridinedicarboxylic acid ligand (H4dppd) has been synthesized and characterized by IR spectra and X-ray single crystal diffraction method. The results show that trinuclear clusters {Co3} are formed in complex 1 which are connected into 2D layer structure by bridging Hdppd3- ligands; neighboring 2D layers are further linked into 3D supramolecular polymers by intermolecular hydrogen bonds. In addition, thermal stability and magnetic property of complex 1 were also studied.

Keywords:

Co(II) complex, crystal structure, magnetic property, N-heterocyclic polycarboxylic acid, thermal stability.

Code [ID]:

CSCC6202001V01S01A0003 [0005091]

Note:

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