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Liquid chromatography—Fourier-transform

Table 5.7 Theoretically predicted polypeptides from the trypsin digestion of S-lacto-globulin (/3LG) . Reprinted from J. Chromatogr., A, 763, Turula, V. E., Bishop, R. T., Ricker, R. D. and de Haseth, J. A., Complete structure elucidation of a globular protein by particle beam liquid chromatography-Fourier transform infrared spectrometry and electrospray liquid chromatography-mass spectrometry - Sequence and conformation of /3-lactoglobulin , 91-103, Copyright (1997), with permission from Elsevier Science... Table 5.7 Theoretically predicted polypeptides from the trypsin digestion of S-lacto-globulin (/3LG) . Reprinted from J. Chromatogr., A, 763, Turula, V. E., Bishop, R. T., Ricker, R. D. and de Haseth, J. A., Complete structure elucidation of a globular protein by particle beam liquid chromatography-Fourier transform infrared spectrometry and electrospray liquid chromatography-mass spectrometry - Sequence and conformation of /3-lactoglobulin , 91-103, Copyright (1997), with permission from Elsevier Science...
F. C. Sanchez, T. Hancewicz, B.G.M. Vandeginste and D.L. Massart, Resolution of complex liquid chromatography Fourier transform infrared spectroscopy data. Anal. Chem., 69 (1997) 1477-1484. [Pg.305]

Liquid Chromatography-Fourier-transform Infrared Couplings... [Pg.490]

M. Ramstrom, I. Ivonin, A. Johansson, H. Askmark, K. E. Markides, R. Zubarev, P. Hakansson, S.-M. Aquilonius, and J. Bergquist. Cerebrospinal Fluid Protein Patterns in Neurodegenerative Disease Revealed by Liquid Chromatography Fourier Transform Ion Cyclotron Resonance Mass Spectrometry. Proteomics, 4(2004) 4010-4018. [Pg.334]

Table 24.1 Attributes of Reversed-Phase Liquid Chromatography-Fourier Transform Infrared Systems Using Direct... [Pg.741]

Herniman, J. M., Bristow, T. W. T., O Connor, G., Jarvis, J., and Langley, G. J. (2004). Improved precision and accuracy for high-performance liquid chromatography/Fourier transform ion cyclotron resonance mass spectrometric exact mass measurement of small molecules from the simultaneous and controlled introduction of internal calibrants via a second electrospray nebuliser. Rapid Commun. Mass Spectrom. 18 3035-3040. [Pg.70]

Belov ME, Anderson GA, Wingerd MA, et al. An automated high performance capillary liquid chromatography-Fourier transform ion cyclotron resonance mass spectrometer for high-throughput proteomics. J Am Soc Mass Spectrom 2004 15(2) 212-232. [Pg.182]

Schrader, S., and Klein, H.-W. (2004). Liquid chromatography/Fourier transform ion cyclotron resonance mass spectrometry (LC-FTICR MS) An early overview. Anal. Bioanal. Chem. 379,1013-1024. [Pg.586]

Wang F, Weidt S, Xu J, Mackay CL, Langridge-Smith PRR, Sadler PJ (2008) Identification of clusters from reactions of ruthenium arene anticancer complex with glutathione using nanoscale liquid chromatography fourier transform ion cyclotron mass spectrometry combined with 180-labeling. J Am Soc Mass Spectrom 19 544-549... [Pg.52]

There are a few liquid chromatography/Fourier transform infrared spectroscopy (LC/FT1R) instruments commercially available, but there are so far no published applications on the analysis of chemicals... [Pg.361]

LC-FTICR MS liquid chromatography fourier transform ion cyclotron resonance mass... [Pg.3]

Ramstrom M, Hagman C, Mitchell JK, Derrick PJ, Hakansson P, Bergquist J (2005) Depletion of high-abundant proteins in body fluids prior to liquid chromatography fourier transform ion cycloti on resonance mass spectrometry. J Proteome Res 4 410 16. [Pg.740]

Romanach and de Haseth [3] have used, in CCC, a how cell for LC-FTIR (liquid chromatography-Fourier transform infrared) spectrometry. The main difflculty is the absorbance of the liquid mobile phase. This problem is exacerbated in EC by low solute-to-solvent ratios in the eluates. On the contrary, CCC leads to a high solute-to-solvent ratio so that it can be used with a very simple interface with a CCC column, without any complex solvent removal procedures. High sample loadings are possible by using the variable path length of the IR detector (from 0.025 to 1.0 mm). [Pg.515]

PR Griffiths, AJ Lange. On-line use of the concentric flow nebulizer for direct deposition liquid chromatography-Fourier transform infrared spectrometry. J Chromatogr Sci 30 93-97, 1992. [Pg.544]

Somsen, G. W., Jagt, 1., Gooijer, C., Velthorst, N. H., Brinkman, U. A. Th., and Visser, T., Identification of herbicides in river water using online trace enrichment combined with column liquid chromatography-Fourier-transform infrared spectrometry, J. Chromatogr. A, 756, 145-157, 1996. [Pg.1017]

Liquid chromatography-Fourier-transform infrared spectrometry (LC-FTIR) 176, 177... [Pg.60]

See also. Gas Chromatography Fourier Transform Infrared Spectroscopy. Liquid Chromatography Fourier-Transform Infrared Spectroscopy. [Pg.1770]

Liquid Chromatography-Mass Spectrometry Liquid Chromatography-Fourier Transform infrared Liquid Chromatography-Nuciear Magnetic Resonance Spectrometry Amino Acids... [Pg.2519]

LIQUID CHROMATOGRAPHY/Liquid Chromatography Fourier Transform Infrared... [Pg.2650]

Kalasinsky KS and Kalasinsky VF (2002) High-performance liquid chromatography/Fourier transform infrared spectroscopy. In Handbook of Vibrational Spectroscopy, vol. 2, pp. 1641-1660. Chichester Wiley. [Pg.2657]

White R (1990) Liquid chromatography/Fourier transform infrared spectroscopy. In Chromatography/Fourier Transform Infrared Spectroscopy and its Applications, pp. 95-136. New York Dekker. [Pg.2657]


See other pages where Liquid chromatography—Fourier-transform is mentioned: [Pg.107]    [Pg.447]    [Pg.106]    [Pg.276]    [Pg.771]    [Pg.453]    [Pg.106]    [Pg.610]    [Pg.1728]    [Pg.2648]    [Pg.2649]   


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