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Nanocrystalline hybrid inorganic-organic one-dimensional chain systems tailored with 2 and 3-phenyl rings monocarboxylic acids (CROSBI ID 181813)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Djerdj, Igor ; Popović, Jasminka ; Stare, Jernej ; Ambrožić, Gabriela ; Škapin, Srečo D. ; Kozlevčar, Bojan ; Pajić, Damir ; Jagličić, Zvonko ; Crnjak Orel, Zorica Nanocrystalline hybrid inorganic-organic one-dimensional chain systems tailored with 2 and 3-phenyl rings monocarboxylic acids // Journal of materials chemistry, 22 (2012), 20; 10255-10265. doi: 10.1039/C2JM16213J

Podaci o odgovornosti

Djerdj, Igor ; Popović, Jasminka ; Stare, Jernej ; Ambrožić, Gabriela ; Škapin, Srečo D. ; Kozlevčar, Bojan ; Pajić, Damir ; Jagličić, Zvonko ; Crnjak Orel, Zorica

engleski

Nanocrystalline hybrid inorganic-organic one-dimensional chain systems tailored with 2 and 3-phenyl rings monocarboxylic acids

Two novel nanosized hybrid inorganicorganic frameworks, VO(C14H9COO)2, and VO(C10H7COO)2 have been solvothermally synthesized and their structures elucidated using a combination of powder XRD and DFT geometry optimization. They contain one-dimensional chain of corner-sharing tetrahedra in the case of VO(C10H7COO)2, and corner-sharing octahedra for VO(C14H9COO)2 oriented along orthorhombic/monoclinic c-axis, respectively. While VO(C14H9COO)2 exhibits bidentate bridging binding of organic moiety to the metal center, VO(C10H7COO)2 shows monodentate mode as evidenced from DFT and infrared spectroscopy. Both hybrids exhibit fiber-like morphology, consisting of smaller individual single crystals aligned in parallel to the growth direction along the c-axis. They are thermally stable up to 350 °C having even more stable impurities containing vanadium in its highest oxidation state. The magnetic properties have been also investigated and indicate antiferromagnetic ordering along the chains characterized by rather low spin exchange parameters.

metal-organic framework; antiferromagnetism; one-dimensional

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Podaci o izdanju

22 (20)

2012.

10255-10265

objavljeno

0959-9428

10.1039/C2JM16213J

Povezanost rada

Fizika, Kemija

Poveznice
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