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Mass analyzed ion kinetic energy

MIKES. mass-analyzed ion kinetic energy spectroscopy... [Pg.446]

The structure of the radical cation [CaHsN] (102) has been established by mass-analyzed ion kinetic energy spectrometry (MIKE) (780MS518). From structure (103), structures (104) and (105) are formed (Scheme 4). [Pg.203]

Mass-analyzed ion kinetic energy spectra (MIKES) [85,86] can be measured on BE geometry instruments only. The precursor ion is selected by the magnet and the fragments from dissociations of in the 2.FFR are analyzed by the ESA due to their kinetic energy. This is possible, because the kinetic energy of the precursor is distributed among the product ion and the neutral. Derived from Eq. 4.10 we have... [Pg.142]

Beynon, J.H. Cooks, R.G. Amy, J.W. Baitinger, W.E. Ridley, T.Y. Design and Performance of a Mass-Analyzed Ion Kinetic Energy (MIKE) Spectrometer. Anal Chem. 1973,45, 1023A. [Pg.185]

Fig. 7. Mass-analyzed ion kinetic energy (MIKE) spectra of C6FsSi(CH3)3. [Reproduced with permission from J. M. Miller, J. Ross, J. Rustenberg, and G-. L. Wilson, Anal. Chem. 45, 627 (1973) copyright by the American Chemical Society.]... Fig. 7. Mass-analyzed ion kinetic energy (MIKE) spectra of C6FsSi(CH3)3. [Reproduced with permission from J. M. Miller, J. Ross, J. Rustenberg, and G-. L. Wilson, Anal. Chem. 45, 627 (1973) copyright by the American Chemical Society.]...
Mass spectrometry is suitable for the identification of pyrrolo-benzodiaze-pines and the differentiation of their isomers (1996M1653). A structural distinction can be made easily from their mass spectra or the metastable mass-analyzed ion kinetic energy (MIKE) spectra, produced by their molecular or most intense fragment ions. Established fragmentation pathways have been supported by MNDO and AMI semiempiiical calculations. [Pg.69]

TD-IT, Thermal desorption-ion trap CAD MIKE, collisionally activated decomposition mass-analyzed ion kinetic energy MID, multiple ion detection FID, flame ionization detector NPD, nitrogen/phosphorus detector SIM, selected ion monitoring El, electron impact TMS, trimethylsilane MTBSTFA, N-methyl-N-(tetr.-butyldimethylsilyl)trifluoroacetamide. [Pg.1024]

The mass spectrometric behavior of iridium and iridium(II) 3,5-dimcthyl-4-nitropyrazolates was studied in detail with the aid of linked scans and mass analyzed ion kinetic energy spectra [1290],... [Pg.335]

In electron impact (El) mass spectra PCDTs show a strong molecular M1 ion and the expected clustering due to chlorine and sulfur isotopes. The major difference in the El mass spectra of the PCDDs and PCDTs is the formation of a strong M+-COCl in the former and a strong M+-2C1 in the latter compounds. PCDDs and PCDFs could be detected with good sensitivity via the reaction M+— (M-COCl)+ by QUAD MS/MS. Mass-analyzed ion kinetic energy (MIKE) MS/MS was found suitable for detecting the PCDTs via the reaction M+ —> (M-2Cl)+, whereas PCDDs and PCDFs were monitored by the reaction M+ —> (M-COCl)+ [31]. [Pg.302]

Certain quinazolines, e,g. l-methylquinazolin-4(l//)-one, fragment by a retro-Diels-Alder process. The MIKE (mass analyzed ion kinetic energy) spectrum of the molecular dication of quinazoline is very similar to that of quinoxaline. MIKE spectra of quinazolinethiones show the loss of NCS radicals from the molecular ionA ... [Pg.8]

Kemp, D. L., Cooks, R. G. and Beynon, J. H. Simulated mass-analyzed ion kinetic energy (MIKE) spectra from a conventional double focusing mass spectrometer. Int.. Mass Spectrom. Ion Phys. 21 93-101, 1976. [Pg.297]

Figure 16, Top — Mass-analyzed ion kinetic energy spectrum (MIKES) of the precursor ion CeoFTe acquired at 10 keV collisons energy with the collision gas. Bottom — the intensity ratio of the product dianion (CeoFTe) to the monoanion precursor (CeoFTe) as a function of collision energy. Figure 16, Top — Mass-analyzed ion kinetic energy spectrum (MIKES) of the precursor ion CeoFTe acquired at 10 keV collisons energy with the collision gas. Bottom — the intensity ratio of the product dianion (CeoFTe) to the monoanion precursor (CeoFTe) as a function of collision energy.
Kruger, T.L. et at 1977, Identification of alkaloids in crude extracts by mass-analyzed ion kinetic energy spectrometry Journal(f Organic Chemistry 4161-416I2. [Pg.269]


See other pages where Mass analyzed ion kinetic energy is mentioned: [Pg.543]    [Pg.158]    [Pg.158]    [Pg.47]    [Pg.97]    [Pg.8]    [Pg.39]    [Pg.142]    [Pg.143]    [Pg.231]    [Pg.246]    [Pg.158]    [Pg.53]    [Pg.260]    [Pg.249]    [Pg.186]    [Pg.269]    [Pg.454]    [Pg.102]    [Pg.35]    [Pg.241]    [Pg.229]    [Pg.78]    [Pg.306]    [Pg.44]    [Pg.125]    [Pg.491]   


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Analyzer, energy

Ion energies

Ion kinetics

Mass analyzer

Mass kinetics

Mass-analyzed ion kinetic energy spectrometer

Mass-analyzed ion kinetic energy spectrometry

Mass-analyzed ion kinetic energy spectroscopy

Mass-analyzed ion kinetic energy spectrum

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