| Literature DB >> 31747754 |
Bahar Karadeniz1, Dijana Žilić1, Igor Huskić2, Luzia S Germann2,3, Athena M Fidelli2, Senada Muratović1, Ivor Lončarić1, Martin Etter4, Robert E Dinnebier3, Dajana Barišić1, Nikola Cindro5, Timur Islamoglu6, Omar K Farha6, Tomislav Friščić1,2, Krunoslav Užarević1.
Abstract
Tetratopic porphyrin-based metal-organic frameworks (MOFs) represent a particularly interesting subclass of zirconium MOFs due to the occurrence of several divergent topologies. Control over the target topology is a demanding task, and reports often show products containing phase contamination. We demonstrate how mechanochemistry can be exploited for controlling the polymorphism in 12-coordinated porphyrinic zirconium MOFs, obtaining pure hexagonal PCN-223 and cubic MOF-525 phases in 20-60 min of milling. The reactions are mainly governed by the milling additives and the zirconium precursor. In situ monitoring by synchrotron powder X-ray diffraction revealed that specific reaction conditions resulted in the formation of MOF-525 as an intermediate, which rapidly converted to PCN-223 upon milling. Electron spin resonance measurements revealed significant differences between the spectra of paramagnetic centers in two polymorphs, showing a potential of polymorphic Zr-MOFs as tunable supports in spintronics applications.Entities:
Year: 2019 PMID: 31747754 DOI: 10.1021/jacs.9b10251
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419