UV-MALDI mass spectrometric quantitation of uracil based pesticides in fruit soft drinks along with matrix effects

Bojidarka Ivanova1, Michael Spiteller1

  • 1Lehrstuhl für Analytische Chemie, Institut für Umweltforschung, Fakultät für Chemie, Universität Dortmund, Otto-Hahn-Strasse 6, 44227 Dortmund, Nordrhein-Westfalen, Germany.

Keywords:
(heteronuclear) multibond correlation spectroscopy (NMR processing mode)(homonuclear) correlation spectroscopy (NMR processing mode)2,4-dihydroxy benzoic acid2,5-dihydroxy benzoic acidADIsANOVAAOELsAPCIAcceptable daily intakeB3LYPB3PW91Becke, three-parameter, Lee–Yang–Parr quantum chemical method (functional)COZYChemometricsDHADHBESIFruit soft drinksGGCGPGluHMBCHPLCHSQCHexLCLMWLODsLOQsM06-2XMALDIMLODsMLOQsMSMS/MSMass spectrometryMcLMcLafferty rearrangment (mass spectrometric term)Meta hybrid GGA quantum chemical method (functional)NMRPCMPOQuantitationRARTsSucTOFUVUracil based pesticidesacceptable operator exposure levelsanalysis of varianceatmospheric pressure chemical ionization (mass spectrometric method)concentration limit of detection (analyte)concentration limit of quantitation (analyte)concentration method detection limit (instrumental)concentration method quantitation limit (instrumental)electrospray ionization (mass spectrometric method)gas-chromatographygas-phaseglucoseheteronuclear single quantum coherence (NMR processing mode)hexosehigh performance liquid chromatographyliquid chromatographylow molecular weight (analytes)mass spectrometrymass spectrometry in a tandem mode of operationmatrix/assisted laser desorption ionization (mass spectrometric method)nuclear magnetic resonancepolarizable continuum model (quantum chemical method)polynomial orderquantum chemical method (functional)quartet–guanine quartetrelative abundanceretention timessucrosetime-of-flight (mass spectrometric method)ultraviolet (irradiation)

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