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      Surface Acoustic Wave Nebulization Produces Ions with Lower Internal Energy than Electrospray Ionization

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          Abstract

          Surface acoustic wave nebulization (SAWN) has recently been reported as a novel method to transfer non-volatile analytes directly from solution to the gas phase for mass spectrometric analysis. Here we present a comparison of the survival yield of SAWN versus electrospray ionization (ESI) produced ions. A series of substituted benzylpyridinium (BzPy) compounds were utilized to measure ion survival yield from which ion energetics were inferred. We also estimated bond dissociation energies using higher level quantum chemical calculations than previously reported for BzPy ions. Additionally, the effects on BzPy precursor ion survival of SAWN operational parameters such as inlet capillary temperature and solution flow-rate were investigated. Under all conditions tested, SAWN-generated BzPy ions displayed a higher tendency for survival and thus have lower internal energies than those formed by ESI.

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          Author and article information

          Journal
          Journal of The American Society for Mass Spectrometry
          J. Am. Soc. Mass Spectrom.
          Springer Science and Business Media LLC
          1044-0305
          1879-1123
          June 2012
          April 3 2012
          June 2012
          : 23
          : 6
          : 1062-1070
          Article
          10.1007/s13361-012-0352-8
          22476889
          000f94da-5a55-4148-be78-9c81f9f31771
          © 2012

          http://www.springer.com/tdm

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