Artikel ; Online: Flexible Co(II)-and Ni(II)-Based Cationic 2D Metal–Organic Frameworks Based on a Charge-Neutral (O,O)-Donor Bridge
Inorganics, Vol 11, Iss 259, p
2023 Band 259
Abstract: Two new metal–organic frameworks based on highly flexible 1,4-diazabicyclo[2.2.2]octane N,N′-dioxide (odabco) ligands were successfully synthesized and characterized. Their crystallographic formulae are [M(DMF) 2 (odabco) 2 ](ClO 4 ) 2 ·dioxane, where M ... ...
Abstract | Two new metal–organic frameworks based on highly flexible 1,4-diazabicyclo[2.2.2]octane N,N′-dioxide (odabco) ligands were successfully synthesized and characterized. Their crystallographic formulae are [M(DMF) 2 (odabco) 2 ](ClO 4 ) 2 ·dioxane, where M 2+ = Co 2+ ( 1 ) and Ni 2+ ( 2 ), and DMF is N,N-dimethylformamide. The title compounds possess cationic 2D coordination networks filled with perchlorate anions and dioxane solvent molecules in the interlayer space, with 20% solvent accessible volume. Carbon dioxide adsorption measurements for desolvated samples 1a and 2a gave 511 m 2 /g and 377 m 2 /g specific surface areas, respectively, revealing the first example of gas adsorption properties in the structure based on a flexible odabco bridge, despite the presence of large counteranions within the positively charged network. Magnetization measurements for 1 , 1a , 2 and 2a reveal their paramagnetic nature to be in a reasonable agreement with crystal structures, and almost no solvent dependence of the magnetization characteristics. A decrease in the effective magnetic moment observed at low temperatures is attributed mostly to zero-field level-splitting in the octahedral Ni 2+ and Co 2+ ions. |
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Schlagwörter | metal–organic framework ; coordination polymer ; cationic networks ; aliphatic ligands ; gas adsorption ; magnetic properties ; Inorganic chemistry ; QD146-197 |
Thema/Rubrik (Code) | 333 |
Sprache | Englisch |
Erscheinungsdatum | 2023-06-01T00:00:00Z |
Verlag | MDPI AG |
Dokumenttyp | Artikel ; Online |
Datenquelle | BASE - Bielefeld Academic Search Engine (Lebenswissenschaftliche Auswahl) |
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