4,4′-Bipyridine-aided synthesis and characterization of Zn(II) and Cd(II) 2-sulfoterephthalate complexes
- College of Chemistry, Beijing Normal University, Beijing 100875 (China)
- Analytical and Testing Centre, Beijing Normal University, Beijing 100875 (China)
Six d{sup 10} complexes, [Zn{sub 1.5}(stp)(bpy){sub 0.5}(H{sub 2}O){sub 2}]·0.5H{sub 2}O (1), Cd{sub 1.5}(stp)(bpy){sub 0.5}(H{sub 2}O){sub 2} (2), [Cd{sub 1.5}(stp)(bpy)(H{sub 2}O)]·H{sub 2}O (3), [Zn{sub 0.5}(bpy){sub 0.5}(H{sub 2}O){sub 2}][Zn(stp)(bpy)(H{sub 2}O)]·0.5H{sub 2}O (4), Cd{sub 3}(stp){sub 2}(bpy){sub 3}(H{sub 2}O){sub 3} (5), Hbpy·[Zn{sub 0.5}(bpy)(H{sub 2}O){sub 2}][Zn{sub 0.5}(stp)(H{sub 2}O)]·H{sub 2}O (6) based on 2-sulfoterephthalate (stp{sup 3−}) and 4,4′-bipyridine (bpy) have been synthesized under hydro/solvo-thermal conditions and structurally characterized. Complex 1 exhibits a three-fold interpenetrated 3D porous architecture. Complexes 2 and 3 possess helices with different chirality arranging alternately. 4 and 6 are addition compounds, which compose of complex cation and complex anion. Complex 5 features a 3D layer-pillar framework in which a (4, 4) grid layer is constructed by stp{sup 3−} ligands and Cd(II) ions, and the layers are further connected by bpy pillars. The solid-state luminescent properties of the coordination polymers have also been investigated. - Graphical abstract: Display Omitted - Highlights: • Complexes 1–3 possess helices with different chirality arranging alternately. • The structural diversity can be attributed to various coordination modes of ligands. • The formation of helical structure is related to the adjacent carboxyl and sulfonate groups. • Bpy exhibits three roles: bridge, hydrogen bonding acceptor, and template.
- OSTI ID:
- 22274072
- Journal Information:
- Journal of Solid State Chemistry, Journal Name: Journal of Solid State Chemistry Vol. 205; ISSN 0022-4596; ISSN JSSCBI
- Country of Publication:
- United States
- Language:
- English
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