D-Mannitol, 6TMS derivative


Gas Chromatography

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: NIST Mass Spectrometry Data Center, William E. Wallace, director

Kovats' RI, non-polar column, isothermal

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Column type Active phase Temperature (C) I Reference Comment
PackedSE-30210.1979.Saura-Calixto, Cañellas, et al., 1984N2, Supelcoport (80-100mesh); Column length: 3. m
CapillaryOV-101200.1993.6Adam, 1981Column length: 50. m

Van Den Dool and Kratz RI, non-polar column, temperature ramp

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Column type Active phase I Reference Comment
CapillaryVF-5MS1912.3Tretyakov, 201130. m/0.25 mm/0.25 μm, He; Tstart: 60. C; Tend: 270. C
CapillaryDB-5MS1925.8Jonsson, Johansson, et al., 200510. m/0.18 mm/0.18 μm, 70. C @ 2. min, 40. K/min, 320. C @ 2. min
CapillaryRTX-5Sil1927.7Wagner, Sefkow, et al., 200380. C @ 2. min, 18. K/min, 350. C @ 2. min; Column length: 30. m; Column diameter: 0.25 mm
CapillaryDB-51958.Fu, Iga, et al., 200030. m/0.25 mm/0.25 μm, He, 100. C @ 1. min, 10. K/min, 290. C @ 8. min

Van Den Dool and Kratz RI, non-polar column, custom temperature program

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Column type Active phase I Reference Comment
CapillaryPolydimethyl siloxane with 5 % phenyl groups1919.Kempa, Hummel, et al., 2009Program: not specified
CapillaryHP-51975.Madaj, Wisniewski, et al., 1993H2; Column length: 50. m; Column diameter: 0.20 mm; Program: 115 0C 3 0C/min -> 180 0C 4 0C/min -> 250 0C

Normal alkane RI, non-polar column, temperature ramp

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Column type Active phase I Reference Comment
CapillaryHP-51973.Isidorov, Lech, et al., 200830. m/0.25 mm/0.25 μm, Helium, 3. K/min, 300. C @ 30. min; Tstart: 50. C
CapillaryHP-51969.Isidorov, Kotowska, et al., 200530. m/0.25 mm/0.25 μm, He, 5. K/min; Tstart: 50. C; Tend: 300. C

Normal alkane RI, non-polar column, custom temperature program

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Column type Active phase I Reference Comment
CapillaryHP-51975.Isidorov, Lech, et al., 200830. m/0.25 mm/0.25 μm, Helium; Program: not specified

References

Go To: Top, Gas Chromatography, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Saura-Calixto, Cañellas, et al., 1984
Saura-Calixto, F.; Cañellas, J.; García-Raso, A., Gas chromatograph analysis of surgars and sugar-alcohols in the mesocarp, endocarp, and kernel of almond fruit, J. Agric. Food Chem., 1984, 32, 5, 1018-1020, https://doi.org/10.1021/jf00125a017 . [all data]

Adam, 1981
Adam, S., Separation of mono- and di-saccharide derivatives by high-resolution gas chromatography, Z. Lebensm. Unters. Forsch., 1981, 173, 2, 109-112, https://doi.org/10.1007/BF01042273 . [all data]

Tretyakov, 2011
Tretyakov, K.V., Retention Data (March 2011). NIST Mass Spectrometry Data Center., NIST Mass Spectrometry Data Center, 2011. [all data]

Jonsson, Johansson, et al., 2005
Jonsson, P.; Johansson, A.I.; Gullberg, J.; Trygg, J.; Jiye, A.; Grung, B.; Marklund, S.; Sjöström, M.; Antti, H.; Moritz, T., High-throughput data analysis for detecting and identifying differences between samples in GC/MS-based metabolomic analyses, Anal. Chem., 2005, 77, 17, 5635-5642, https://doi.org/10.1021/ac050601e . [all data]

Wagner, Sefkow, et al., 2003
Wagner, C.; Sefkow, M.; Kopka, J., Construction and application of a mass spectral and retention time index database generated from plant GC/EI-TOF-MS metabolite profiles, Phytochemistry, 2003, 62, 6, 887-900, https://doi.org/10.1016/S0031-9422(02)00703-3 . [all data]

Fu, Iga, et al., 2000
Fu, X.; Iga, M.; Kimura, M.; Yamaguchi, S., Simplified screening for organic acidemia using GC/MS and dried urine filter paper: a study on neonatal mass screening, Early Hum. Dev., 2000, 58, 1, 41-55, https://doi.org/10.1016/S0378-3782(00)00053-0 . [all data]

Kempa, Hummel, et al., 2009
Kempa, S.; Hummel, J.; Schwemmer, T.; Pietzke, M.; Strehmel, N.; Wienkoop, S.; Kopka, J.; Weckwerth, W., An automated GCxGC-TOF-MS protocol for batch-wise extraction and alinmebt of mass isotopomer matrixes from differential 13C-labeling experiments: a case study for photoautotrophic-mixotrophic grown Chlamydomonas reinhardtii cells, J. Basic Microbiol., 2009, 49, 1, 82-91, https://doi.org/10.1002/jobm.200800337 . [all data]

Madaj, Wisniewski, et al., 1993
Madaj, J.; Wisniewski, A.; Skorupowa, E.; Sokolowski, J., Capillary gas chromatographic separations of a multicomponent mixture of polyalcohol compounds, J. Chromatogr. A, 1993, 655, 2, 267-273, https://doi.org/10.1016/0021-9673(93)83232-H . [all data]

Isidorov, Lech, et al., 2008
Isidorov, V.A.; Lech, P.; Zolciak, A.; Rusak, N.; Szczepaniak, L., Gas Chromatographic - nass spectrometric investigation of metabolites from the needles and roots of pine seedlings at early stages of pathogenic fungi Armillaria ostoyae attack, Trees, 2008, 22, 4, 531-542, https://doi.org/10.1007/s00468-008-0213-z . [all data]

Isidorov, Kotowska, et al., 2005
Isidorov, V.A.; Kotowska, U.; Vinogorova, V.T., GC Identification of organic compounds based on partition coefficients of their TMS derivatives in a hexane-acetonitrile system and retention indices, Anal. Sci., 2005, 21, 12, 1483-1489, https://doi.org/10.2116/analsci.21.1483 . [all data]


Notes

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