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A three‐dimensional twofold interpenetrated cobalt(II) MOF containing a flexible carboxylate‐based ligand: synthesis, structure and magnetic properties
Author(s) -
An Yan-Yan,
Lu Li-Ping,
Zhu Miao-Li
Publication year - 2018
Publication title -
acta crystallographica section c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.304
H-Index - 17
ISSN - 2053-2296
DOI - 10.1107/s205322961800325x
Subject(s) - superexchange , isophthalic acid , crystallography , thermogravimetric analysis , hydrothermal synthesis , metal organic framework , carboxylate , chemistry , magnetic susceptibility , sbus , powder diffraction , antiferromagnetism , infrared spectroscopy , cobalt , ligand (biochemistry) , materials science , hydrothermal circulation , stereochemistry , ion , inorganic chemistry , adsorption , terephthalic acid , organic chemistry , physics , biochemistry , receptor , condensed matter physics , seismology , polyester , geology
The design and synthesis of coordination polymers (CPs) have attracted much interest due to the intriguing diversity of their architectures and topologies. The functional solid catena ‐poly[μ 2 ‐aqua‐triaqua{μ 4 ‐5‐[4‐carboxyphenoxy)methyl]benzene‐1,3‐dicarboxylato}{μ 3 ‐5‐[4‐carboxyphenoxy)methyl]benzene‐1,3‐dicarboxylato}dicobalt(II)], [Co 2 (C 16 H 10 O 7 ) 2 (H 2 O) 4 ] n or [Co 2 (H L ) 2 (μ 2 ‐H 2 O)(H 2 O) 3 ] n , was synthesized successfully by self‐assembly of Co II ions with 5‐[(4‐carboxyphenoxy)methyl]isophthalic acid (H 3 L ). The title compound was obtained under hydrothermal conditions and exhibits a twofold interpenetrated three‐dimensional skeleton with hms 3,5‐conn topology according to the cluster representation for valence‐bonded metal–organic frameworks (MOFs). It has been characterized by single‐crystal X‐ray diffraction, IR spectroscopy, powder X‐ray diffraction (PXRD), thermogravimetric analysis and susceptibility measurements. The antiferromagnetic coupling between adjacent Co II centres occurs via superexchange through the ligands.

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