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High-resolution time-of-flight mass spectrometry

E.A. Rohlfmg, High resolution time-of-flight mass spectrometry of carbon and carbonaceous clusters, J. Chem. Phys. 1990, 93, 7851-7862. [Pg.195]

Koomen, J.M., Russell, W.K., Tichy, S.E., RusseU, D.H. (2002) Accurate mass measurement of DNA oligonucleotide ions using high-resolution time-of-flight mass spectrometry. /. Mass Spectrom., 37(4), 357-371. [Pg.104]

Qian, K. Dechert, G.J. Edwards, K.E. Deducing Molecular Compositions of Petroleum Products Using GC-Field Ionization High Resolution Time of Flight Mass Spectrometry. Int. J. Mass Spectrom. 2007,265,230-236. [Pg.411]

Mccomb, M. E., Krutchinsky, A. N., Ens, W., Standing, K. G., and Perreault, H. (1998). Sensitive high-resolution analysis of biological molecules by capillary-zone-electrophoresis coupled with reflecting time-of-flight mass-spectrometry. /. Chromatogr. A 800, 1 — 11. [Pg.508]

March, R.E. et al., A fragmentation study of an isoflavone glycoside, genistein-7-O-glucoside, using electrospray quadrupole time-of-flight mass spectrometry at high mass resolution, Int. J. Mass Spectrom., 232, 171, 2004. [Pg.131]

Roberts, M.T., Dufour, J.R, Lewis, A.C. (2004) Application of comprehensive multidimensional gas chromatography combined with time of flight mass spectrometry (GCxGC-TOFMS) for high resolution analysis of hop essential oil. J. Sep. Sci. 27 473-478. [Pg.353]

Mortishire-Smith, R. J., O Connor, D., Castro-Perez, J. M., and Kirby, J. (2005). Accelerated throughput metabolic route screening in early drug discovery using high-resolution liquid chromatography/quadrupole time-of-flight mass spectrometry and automated data analysis. Rapid Commun. Mass Spectrom. 19 2659-2670. [Pg.188]

A number of less commonly used analytical techniques are available for determining PAHs. These include synchronous luminescence spectroscopy (SLS), resonant (R)/nonresonant (NR)-synchronous scan luminescence (SSL) spectrometry, room temperature phosphorescence (RTP), ultraviolet-resonance Raman spectroscopy (UV-RRS), x-ray excited optical luminescence spectroscopy (XEOL), laser-induced molecular fluorescence (LIMP), supersonic jet/laser induced fluorescence (SSJ/LIF), low- temperature fluorescence spectroscopy (LTFS), high-resolution low-temperature spectrofluorometry, low-temperature molecular luminescence spectrometry (LT-MLS), and supersonic jet spectroscopy/capillary supercritical fluid chromatography (SJS/SFC) Asher 1984 Garrigues and Ewald 1987 Goates et al. 1989 Jones et al. 1988 Lai et al. 1990 Lamotte et al. 1985 Lin et al. 1991 Popl et al. 1975 Richardson and Ando 1977 Saber et al. 1991 Vo-Dinh et al. 1984 Vo- Dinh and Abbott 1984 Vo-Dinh 1981 Woo et al. 1980). More recent methods for the determination of PAHs in environmental samples include GC-MS with stable isotope dilution calibration (Bushby et al. 1993), capillary electrophoresis with UV-laser excited fluorescence detection (Nie et al. 1993), and laser desorption laser photoionization time-of-flight mass spectrometry of direct determination of PAH in solid waste matrices (Dale et al. 1993). [Pg.347]

Yin, W., G.A. Doss, R.A. Steams, A.G. Chaudhary, C.E. Hop, R.B.Franklin et al. (2003). A novel P450-catalyzed transformation of the 2,2,6,6-tetramethyl piperidine moiety to a 2,2-dimethyl pyrrolidine in human liver microsomes Characterization by high resolution quadrapole-time-of-flight mass spectrometry and H-NMR. Drug Metab. Dispos. 31, 215-223. [Pg.246]

Perera, I. K., Perkins, J., andKantartzoglou, S., Spin-coated samples for high resolution matrix-assisted laser desorption/ionization time-of-flight mass spectrometry of large proteins, Rapid Communication Mass Spectrometry, 9, 180-187,1995. [Pg.1365]

Whittal, R. M., Li, L., Lee, S., and Winnik, M. A., Characterization of Pyrene End-labeled Poly(ethylene glycol) by High Resolution MALDI Time-of-flight Mass Spectrometry, Macromol Rapid Commun., 17, 59,1996. [Pg.522]

D. H. Russell and R. D. Edmondson, High-resolution mass spectrometry and accurate mass measurements with emphasis on the characterization of peptides and proteins by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry, J. Mass Spectrom. 32, KA-llS (1997). [Pg.259]

J. Krause, M. Scalf, and L. M. Smith, High resolution characterization of DNA fragment ions produced by ultraviolet matrix-assisted laser desorption/ionization using linear and reflecting time-of-flight mass spectrometry, J. Am. Soc. Mass Spectrom. 10, 423-429, (1999). [Pg.480]

Peters RJB, van Engelen MC, Touber ME, Georgakopoulus C, Nielen MWF. Searching for in silico predicted metabolites and designer modifications of (cortico)steroids in urine by high-resolution liquid chromatography/time-of-flight mass spectrometry. Rapid Commun Mass Spectrom 2009 23 2329-2337. [Pg.445]

Whittal, R.M. and U, L (1996) Characterization of pyrene end-labeled polyethylene glycol by high resolution MALDI time-of-flight mass spectrometry. Macromol. Rapid Commun., 17, 59-64. [Pg.359]


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Flight time

High mass spectrometry

High-mass

High-resolution mass

High-resolution time-of-flight mass

Mass resolution

Mass spectrometry resolution

Resolution spectrometry

Time mass spectrometry

Time-of-Flight Mass

Time-of-Flight Mass Spectrometry

Time-of-flight

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