In situ and real-time monitoring of mechanochemical milling reactions using synchrotron X-ray diffraction

被引:0
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作者
Ivan Halasz
Simon A J Kimber
Patrick J Beldon
Ana M Belenguer
Frank Adams
Veijo Honkimäki
Richard C Nightingale
Robert E Dinnebier
Tomislav Friščić
机构
[1] Ruđer Bošković Institute,Division of Materials Chemistry
[2] Structure of Materials Group,Department of Materials Science and Metallurgy
[3] European Synchrotron Radiation Facility,Department of Chemistry
[4] University of Cambridge,Department of Chemistry and Centre for Green Chemistry and Catalysis
[5] University of Cambridge,undefined
[6] Max Planck-Institute for Solid State Research,undefined
[7] McGill University,undefined
来源
Nature Protocols | 2013年 / 8卷
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摘要
We describe the only currently available protocol for in situ, real-time monitoring of mechanochemical reactions and intermediates by X-ray powder diffraction. Although mechanochemical reactions (inducing transformations by mechanical forces such as grinding and milling) are normally performed in commercially available milling assemblies, such equipment does not permit direct reaction monitoring. We now describe the design and in-house modification of milling equipment that allows the reaction jars of the operating mill to be placed in the path of a high-energy (∼90 keV) synchrotron X-ray beam while the reaction is taking place. Resulting data are analyzed using conventional software, such as TOPAS. Reaction intermediates and products are identified using the Cambridge Structural Database or Inorganic Crystal Structure Database. Reactions are analyzed by fitting the time-resolved diffractograms using structureless Pawley refinement for crystalline phases that are not fully structurally characterized (such as porous frameworks with disordered guests), or the Rietveld method for solids with fully determined crystal structures (metal oxides, coordination polymers).
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页码:1718 / 1729
页数:11
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