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In Situ Monitoring of the Mechanosynthesis of the Archetypal Metal–Organic Framework HKUST-1 : Effect of Liquid Additives on the Milling Reactivity (CROSBI ID 240618)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Stolar, Tomislav ; Batzdorf, Lisa ; Lukin, Stipe ; Žilić, Dijana ; Motillo, Cristina ; Friščić, Tomislav ; Emmerling, Franziska ; Halasz, Ivan ; Užarević, Krunoslav In Situ Monitoring of the Mechanosynthesis of the Archetypal Metal–Organic Framework HKUST-1 : Effect of Liquid Additives on the Milling Reactivity // Inorganic chemistry, 56 (2017), 11; 6599-6608. doi: 10.1021/acs.inorgchem.7b00707

Podaci o odgovornosti

Stolar, Tomislav ; Batzdorf, Lisa ; Lukin, Stipe ; Žilić, Dijana ; Motillo, Cristina ; Friščić, Tomislav ; Emmerling, Franziska ; Halasz, Ivan ; Užarević, Krunoslav

engleski

In Situ Monitoring of the Mechanosynthesis of the Archetypal Metal–Organic Framework HKUST-1 : Effect of Liquid Additives on the Milling Reactivity

We have applied in situ monitoring of mechanochemical reactions by high-energy synchrotron powder X-ray diffraction to study the role of liquid additives on the mechanochemical synthesis of the archetypal metal–organic framework (MOF) HKUST-1, which was one of the first and is still among the most widely investigated MOF materials to be synthesized by solvent-free procedures. It is shown here how the kinetics and mechanisms of the mechanochemical synthesis of HKUST-1 can be influenced by milling conditions and additives, yielding on occasion two new and previously undetected intermediate phases containing a mononuclear copper core, and that finally rearrange to form the HKUST-1 architecture. On the basis of in situ data, we were able to tune and direct the milling reactions toward the formation of these intermediates, which were isolated and characterized by spectroscopic and structural means and their magnetic properties compared to those of HKUST-1. The results have shown that despite the relatively large breadth of analysis available for such widely investigated materials as HKUST-1, in situ monitoring of milling reactions can help in the detection and isolation of new materials and to establish efficient reaction conditions for the mechanochemical synthesis of porous MOFs.

mechanochemistry ; metal-organic frameworks ; HKUST-1 ; in situ X-ray diffraction ; ESR ; intermediate ; coordination polymers

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Podaci o izdanju

56 (11)

2017.

6599-6608

objavljeno

0020-1669

10.1021/acs.inorgchem.7b00707

Povezanost rada

Fizika, Kemija

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Indeksiranost