Publication | Closed Access
Quantitative in situ and real-time monitoring of mechanochemical reactions
87
Citations
33
References
2014
Year
Real-time MonitoringX-ray SpectroscopyEngineeringMechanical EngineeringChemistryX-ray BeamSynchrotron Radiation SourceX-ray FluorescenceAnalytical ChemistryInstrumentationMaterials ScienceChemical MeasurementPhysicsShaker Ball MillSynchrotron RadiationMicrostructureNatural SciencesX-ray DiffractionMass SpectrometryMechanochemistryReaction ProcessX-ray OpticChemical KineticsX-ray Radiation
An experimental technique for in situ and real-time monitoring of mechanochemical reactions in a shaker ball mill was recently described, which utilises highly penetrating X-ray radiation available at the ID15B beamline of the European Synchrotron Radiation Facility. Herein, we describe the first attempts to perform such reaction monitoring in a quantitative fashion, by introducing an internal X-ray diffraction standard. The use of silicon as an internal standard resolved the issue with variations of the amount of the sample in the X-ray beam due to the non-uniform distribution of the sample in the reaction jar and allowed, via Rietveld analysis, the first quantitative estimate of the amorphous phase content in a mechanochemical reaction as it is being milled. We also highlight problems associated with the non-ideal mixing of the reaction mixture.
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