Publication | Open Access
A ceramic electrochemical microreactor for the methoxylation of methyl-2-furoate with direct mass spectrometry coupling
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Citations
11
References
2002
Year
EngineeringMethanolAnalytical MicrosystemsBand ElectrodesDirect Mass SpectrometryChemistryElectrometallurgyChemical EngineeringOrganic ElectrochemistryAnalytical ChemistryElectrode Reaction MechanismMaterials ScienceSpectroelectrochemistryCatalysisElectrochemical CellElectrochemistryStructured Ceramic LayersMicrofabricationBioelectronicsMass SpectrometryFundamental ElectrochemistryElectroanalytical SensorCeramic Electrochemical ReactorCeramic Electrochemical Microreactor
A ceramic electrochemical reactor (CEM) devoted to electrosyntheses was developed. The CEM was constituted by the assembly of five structured ceramic layers. On one layer, platinum interdigitated band electrodes with a submillimetre interelectrode gap were screen-printed. The microreactor chamber was constituted by seven channels and its volume was less than 100 microL. After a sintering step at 850 degree C for 1 h, the CEM appeared as a solid and compact unit. The CEM was directly connected to the six port valve of a mass spectrometer allowing an on-line sampling and analysis of the reaction mixture. The methoxylation of the methyl-2-furoate was carried out and the effect of the residence time in the CEM was investigated thanks to mass spectrometry analyses.
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