机械化学
锆
金属有机骨架
化学
电子顺磁共振
卟啉
同步加速器
拓扑(电路)
多态性(计算机科学)
结晶学
吸附
无机化学
光化学
有机化学
核磁共振
组合数学
物理
基因型
基因
核物理学
生物化学
数学
作者
Bahar Karadeniz,Dijana Žilić,Igor Huskić,Luzia S. Germann,Athena M. Fidelli,Senada Muratović,Ivor Lončarić,Martin Etter,Robert E. Dinnebier,Dajana Barišić,N. Cindro,Timur İslamoğlu,Omar K. Farha,Tomislav Friščić,Krunoslav Užarević
摘要
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.
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