Investigation of the Effects of Cooling after Laser-Desorption before Post-Ionization. Steenvoorden, R., J., J., M., Vanderhage, E., R., E., Boon, J., J., Kistemaker, P., G., & Weeding, T., L. Organic Mass Spectrometry, 29(2):78-84, 1994.
Investigation of the Effects of Cooling after Laser-Desorption before Post-Ionization [link]Website  abstract   bibtex   
To evaluate the necessity for cooling laser-desorbed molecules to obtain molecular ions and minimal fragmentation, mass spectra of a series of methoxybenzenes were measured in two different experimental configurations. In one geometry, laser-desorbed molecules were entrained in a pulsed supersonic jet before ionization. In the other, the molecules were ionized directly after laser desorption. The samples were ionized with laser-generated vacuum ultraviolet radiation in a single-photon process or ultraviolet radiation in a multi-photon process.
@article{
 title = {Investigation of the Effects of Cooling after Laser-Desorption before Post-Ionization},
 type = {article},
 year = {1994},
 keywords = {mass-spectrometry,mechanism,multiphoton ionization,single-photon ionization},
 pages = {78-84},
 volume = {29},
 websites = {<Go to ISI>://A1994ND05200002},
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 last_modified = {2015-05-08T12:55:11.000Z},
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 abstract = {To evaluate the necessity for cooling laser-desorbed molecules to obtain molecular ions and minimal fragmentation, mass spectra of a series of methoxybenzenes were measured in two different experimental configurations. In one geometry, laser-desorbed molecules were entrained in a pulsed supersonic jet before ionization. In the other, the molecules were ionized directly after laser desorption. The samples were ionized with laser-generated vacuum ultraviolet radiation in a single-photon process or ultraviolet radiation in a multi-photon process.},
 bibtype = {article},
 author = {Steenvoorden, R J J M and Vanderhage, E R E and Boon, J J and Kistemaker, P G and Weeding, T L},
 journal = {Organic Mass Spectrometry},
 number = {2}
}

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