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Infrared photodissociation (IRPD) spectroscopy uses infrared radiation to break bonds in ions, photodissociate, within a mass spectrometer. IRPD spectroscopy has been shown to use electron ionization, corona discharge, and electrospray ionization to obtain spectra of volatile and nonvolatile compounds. Ionized gases trapped in a mass spectrometer can be studied without the need of a solvent as in infrared spectroscopy.

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  • Infrared photodissociation spectroscopy (en)
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  • Infrared photodissociation (IRPD) spectroscopy uses infrared radiation to break bonds in ions, photodissociate, within a mass spectrometer. IRPD spectroscopy has been shown to use electron ionization, corona discharge, and electrospray ionization to obtain spectra of volatile and nonvolatile compounds. Ionized gases trapped in a mass spectrometer can be studied without the need of a solvent as in infrared spectroscopy. (en)
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  • Infrared photodissociation–mass spectrometry (en)
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  • http://commons.wikimedia.org/wiki/Special:FilePath/3D_model_hydrogen_bonds_in_water.svg
  • http://commons.wikimedia.org/wiki/Special:FilePath/FTICRinstalA.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/IRPD.jpg
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  • FT-ICR system (en)
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  • Spectroscopy (en)
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  • Infrared photodissociation (IRPD) spectroscopy uses infrared radiation to break bonds in ions, photodissociate, within a mass spectrometer. IRPD spectroscopy has been shown to use electron ionization, corona discharge, and electrospray ionization to obtain spectra of volatile and nonvolatile compounds. Ionized gases trapped in a mass spectrometer can be studied without the need of a solvent as in infrared spectroscopy. (en)
Acronym
  • IRPD (en)
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  • biomolecules (en)
  • organic molecules (en)
  • ion clusters (en)
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