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Pentadecane, 2,6,10-trimethyl-


Mass spectrum (electron ionization)

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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

Spectrum

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Additional Data

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Owner NIST Mass Spectrometry Data Center
Collection (C) 2014 copyright by the U.S. Secretary of Commerce
on behalf of the United States of America. All rights reserved.
Origin Chemical Concepts
NIST MS number 151218

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Gas Chromatography

Go To: Top, Mass spectrum (electron ionization), References, Notes

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
CapillarySE-30200.1650.Shlyakhov, 1984 
Capillaryn-Dotriacontane200.1640.Shlyakhov, 1984 
CapillaryApiezon L200.1633.Shlyakhov, 1984 
PackedApiezon L200.1632.6Fisch, Olácsi, et al., 1980 
PackedSE-30150.1647.Shlyakhov, Anvaer, et al., 1975 
PackedSE-30200.1650.Shlyakhov, Anvaer, et al., 1975 
PackedApiezon L130.1633.Shlyakhov, Anvaer, et al., 1975 
PackedApiezon L150.1633.Shlyakhov, Anvaer, et al., 1975 
CapillarySE-30100.1650.Shlyakhov, Koreshkova, et al., 1975 
CapillaryApiezon L100.1633.Shlyakhov, Koreshkova, et al., 1975 

Kovats' RI, non-polar column, custom temperature program

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Column type Active phase I Reference Comment
CapillaryHP-5MS1649.Kenig, Simons, et al., 200530. m/0.25 mm/0.25 «mu»m, He; Program: 60C(1.5min) => 20C/min => 130C => 4C/min => 315C (90min)
CapillaryApiezon L1632.Shlyakhov, 1984Program: not specified
CapillaryApiezon L1633.Shlyakhov, 1984Program: not specified
CapillaryApiezon L1633.Shlyakhov, 1984Program: not specified
CapillaryApiezon L1633.Shlyakhov, 1984Program: not specified
CapillaryApiezon L1634.Shlyakhov, 1984Program: not specified
CapillaryApiezon L1638.Shlyakhov, 1984Program: not specified

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

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Column type Active phase I Reference Comment
CapillaryCross-Linked Methylsilicone1654.Khorasheh, Gray, et al., 19895. K/min; Tstart: 40. C; Tend: 300. C
CapillaryOV-11653.Berthou and Friocourt, 198150. m/0.30 mm/0.15 «mu»m, H2, 0.5 K/min; Tstart: 60. C; Tend: 280. C
CapillaryOV-11652.Berthou and Friocourt, 198150. m/0.30 mm/0.15 «mu»m, H2, 0.5 K/min; Tstart: 60. C; Tend: 280. C

Normal alkane RI, non-polar column, temperature ramp

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Column type Active phase I Reference Comment
CapillaryVF-5MS1641.Ghiasvand, Setkova, et al., 200730. m/0.25 mm/0.25 «mu»m, 7. K/min; Tstart: 40. C; Tend: 250. C
CapillaryCP Sil 5 CB1652.Höld, Schouten, et al., 199825. m/0.32 mm/0.45 «mu»m, 0. C @ 5. min, 3. K/min, 300. C @ 10. min
CapillaryApieson L1632.Albaigès, Borbón, et al., 1981He, Gas-Chrom Q, 6. K/min; Column length: 50. m; Column diameter: 0.25 mm; Tstart: 120. C; Tend: 280. C

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

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Column type Active phase I Reference Comment
CapillarySqualane1633.Petrov, 1984Program: not specified
CapillaryOV-1, SE-30, Methyl silicone, SP-2100, OV-101, DB-1, etc.1652.Waggott and Davies, 1984Hydrogen; Column length: 50. m; Column diameter: 0.32 mm; Program: not specified
CapillaryApiezon L1634.Douglas, Blumer, et al., 1971Program: not specified

Lee's RI, non-polar column, temperature ramp

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Column type Active phase I Reference Comment
CapillaryDB-5MS275.46Chen, Keeran, et al., 200230. m/0.25 mm/0.5 «mu»m, 40. C @ 1. min, 10. K/min; Tend: 310. C
CapillaryDB-5MS279.10Chen, Keeran, et al., 200230. m/0.25 mm/0.5 «mu»m, 40. C @ 1. min, 4. K/min; Tend: 310. C

References

Go To: Top, Mass spectrum (electron ionization), Gas Chromatography, Notes

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

Shlyakhov, 1984
Shlyakhov, A.F., Gas chromatography in organic geochemistry, Nedra, Moscow, 1984, 221. [all data]

Fisch, Olácsi, et al., 1980
Fisch, I.; Olácsi, I.; Takács, J.; Vörós, J., Pyrolysis and gas chromatographic examination of phytol and isoprenoid hydrocarbons. Pre-calculation of retention indices by computer, J. Anal. Appl. Pyrolysis, 1980, 1, 4, 275-295, https://doi.org/10.1016/0165-2370(80)80013-1 . [all data]

Shlyakhov, Anvaer, et al., 1975
Shlyakhov, A.F.; Anvaer, B.I.; Zolotareva, O.V.; Romina, N.N.; Novikova, N.V.; Koreshkova, R.I., On the possibility of group indentification of hydrocarbons by gas chromatography from temperature coefficients of retention indices, Zh. Anal. Khim., 1975, 30, 788-792. [all data]

Shlyakhov, Koreshkova, et al., 1975
Shlyakhov, A.F.; Koreshkova, R.I.; Telkova, M.S., Gas Chromatography of Isoprenoid Alkanes, J. Chromatogr., 1975, 104, 2, 337-349, https://doi.org/10.1016/S0021-9673(00)91857-0 . [all data]

Kenig, Simons, et al., 2005
Kenig, F.; Simons, D.-J.H.; Crich, D.; Cowen, J.P.; Ventura, G.T.; Rehbein-Khalily, T., Structure and distribution of branched aliphatic alkanes with quaternary carbon atoms in Cenomanian and Turonian black shales of Pasquia Hills (Saskatchewan, Canada), Org. Geochem., 2005, 36, 1, 117-138, https://doi.org/10.1016/j.orggeochem.2004.06.014 . [all data]

Khorasheh, Gray, et al., 1989
Khorasheh, F.; Gray, M.R.; Selucky, M.L., Correlation for Kováts retention index of C9-C26 monoalkyl and polymethyl alkanes and alkenes, J. Chromatogr., 1989, 481, 1-16, https://doi.org/10.1016/S0021-9673(01)96747-0 . [all data]

Berthou and Friocourt, 1981
Berthou, F.; Friocourt, M.P., Gas Chromatographic Separation of Diastereomeric Isoprenoids as Molecular Markers of Oil Pollution, J. Chromatogr., 1981, 219, 3, 393-402, https://doi.org/10.1016/S0021-9673(00)80383-0 . [all data]

Ghiasvand, Setkova, et al., 2007
Ghiasvand, A.R.; Setkova, L.; Pawliszyn, J., Determination of flavour profile in Iranian fragrant rice samples using cold-fibre SPME-GC-TOF-MS, Flavour Fragr. J., 2007, 22, 5, 377-391, https://doi.org/10.1002/ffj.1809 . [all data]

Höld, Schouten, et al., 1998
Höld, I.M.; Schouten, S.; van Kaam-Peters, H.M.E.; Sinninghe Damsté, J.S., Recognition of n-alkyl and isoprenoid algaenans in marine sediments by stable carbon isotopic analysis of pyrolysis products of kerogens, Org. Geochem., 1998, 28, 3-4, 179-194, https://doi.org/10.1016/S0146-6380(97)00130-7 . [all data]

Albaigès, Borbón, et al., 1981
Albaigès, J.; Borbón, J.; Gassiot, M., Gas chromatographic-mass spectrometric identification of geochemically significant isoalkane hydrocarbons, J. Chromatogr., 1981, 204, 491-498, https://doi.org/10.1016/S0021-9673(00)81696-9 . [all data]

Petrov, 1984
Petrov, A.A., Hydrocarbons of petroleum, Nauka (publishing house), Moscow, 1984, 263. [all data]

Waggott and Davies, 1984
Waggott, A.; Davies, I.W., Identification of organic pollutants using linear temperature programmed retention indices (LTPRIs) - Part II, 1984, retrieved from http://dwi.defra.gov.uk/research/completed-research/reports/dwi0383.pdf. [all data]

Douglas, Blumer, et al., 1971
Douglas, A.G.; Blumer, M.; Eglinton, G.; Douraghi-Zadeh, K., Gas chromatographic-mass spectrometric characterization of naturally-occurring acyclic isoprenoid carboxylic acids, Tetrahedron, 1971, 27, 6, 1071-1092, https://doi.org/10.1016/S0040-4020(01)90855-5 . [all data]

Chen, Keeran, et al., 2002
Chen, P.H.; Keeran, W.S.; Van Ausdale, W.A.; Schindler, D.R.; Roberts, D.W., Application of Lee retention indices to the confirmation of tentatively identified compounds from GC/MS analysis of environmental samples, Technical paper, Analytical Services Division, Environmental ScienceEngineering, Inc, PO Box 1703, Gainesville, FL 32602, 2002, 11. [all data]


Notes

Go To: Top, Mass spectrum (electron ionization), Gas Chromatography, References