Title of article :
Separation and identification of isomeric acidic degradation products of organophosphorus chemical warfare agents by capillary electrophoresis-ion trap mass spectrometry
Author/Authors :
Lagarrigue، نويسنده , , Mélanie and Bossée، نويسنده , , Anne and Bégos، نويسنده , , Arlette and Varenne، نويسنده , , Anne and Gareil، نويسنده , , Pierre and Bellier، نويسنده , , Bruno، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
Capillary electrophoresis (CE) coupled to ion trap mass spectrometry (MS) was evaluated for the separation and identification of chemical warfare agent degradation products (alkylphosphonic acids and alkyl alkylphosphonic acids). Different analytical parameters were optimized in negative ionization mode such as electrolyte composition (15 mM CH3COONH4, pH 8.8), sheath liquid composition (MeOH/H2O/NH3, 75:25:2, v/v/v), nebulization and ion trapping conditions. A standard mixture of five alkylphosphonic (di)acids and five alkyl alkylphosphonic (mono)acids containing isomeric compounds was used in order to evaluate CE selectivity and MS identification capability. The obtained electropherograms revealed that CE selectivity was very limited in the case of alkyl alkylphosphonic acid positional isomers, whereas isomeric isopropylphosphonic and propylphosphonic acids were baseline-separated. CE–MS–MS experiments provided an unambiguous identification of each isomeric co-migrating alkyl alkylphosphonic acids thanks to the presence of specific fragment ions. On the other hand, CE separation was mandatory for the identification of isomeric alkylphosphonic acids, which led to the same fragment ion and could not be differentiated by MS–MS. The developed method was applied to the analysis of soil extracts spiked with the analytes (before or after extraction treatment) and appeared to be very promising since resolution and sensitivity were similar to those observed in deionized water. Especially, analytes were detected and identified in soil extract spiked at 5 μg mL−1 with each compound before extraction treatment.
Keywords :
Capillary electrophoresis , CE–MS–MS , electrospray ionization , Chemical warfare agent degradation products , Ion trap mass spectrometry , Soil extracts , isomers , phosphonic acids
Journal title :
Journal of Chromatography A
Journal title :
Journal of Chromatography A