2-Naphthalenemethanol, decahydro-α,α,4a-trimethyl-8-methylene-, [2R-(2α,4aα,8aβ)]-
- Formula: C15H26O
- Molecular weight: 222.3663
- IUPAC Standard InChIKey: BOPIMTNSYWYZOC-ILWWEHDPSA-N
- CAS Registry Number: 473-15-4
- Chemical structure:
This structure is also available as a 2d Mol file or as a computed 3d SD file
The 3d structure may be viewed using Java or Javascript. - Stereoisomers:
- Other names: Eudesm-4(14)-en-11-ol; β-Eudesmol; β-Selinenol; 2-Naphthalenemethanol, 1,2α,3,4,4a,5,6,7,8,8aα-decahydro-α,α,4aβ-trimethyl-8-methylene-; Decahydro-α,α,4a-trimethyl-8-methylene-2-naphthalenemethanol; β-Eudesmol (β-selinenol); 2-Naphthalenemethanol, decahydro-α,α,4a-trimethyl-8-methylene-, (2R,4aR,8aS)-; Naturalβ-Eudesmol
- Permanent link for this species. Use this link for bookmarking this species for future reference.
- Information on this page:
- Other data available:
- Options:
Van Den Dool and Kratz RI, polar column, temperature ramp
Go To: Top, 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
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-Innowax | BP-20 | BP-20 | BP-20 | HP-Wax |
Column length (m) | 30. | 50. | 50. | 50. | 30. |
Carrier gas | He | He | He | N2 | |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.22 | 0.25 | 0.22 | 0.25 |
Phase thickness (μm) | 0.5 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 60. | 60. | 60. |
Tend (C) | 260. | 220. | 220. | 220. | 220. |
Heat rate (K/min) | 3. | 2. | 2. | 2. | 5. |
Initial hold (min) | 10. | ||||
Final hold (min) | 20. | 20. | 20. | ||
I | 2220. | 2234. | 2230. | 2230. | 2249. |
Reference | Saroglou, Marin, et al., 2007 | Blanc, Bradesi, et al., 2006 | Bousmaha, Boti, et al., 2006 | Duquesnoy, Dinh, et al., 2006 | Flamini, Tebano, et al., 2006 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | BP-20 | PEG-20M | BP-20 | DB-Wax | RTX-Wax |
Column length (m) | 50. | 25. | 50. | 60. | 60. |
Carrier gas | He | He | He | N2 | |
Substrate | |||||
Column diameter (mm) | 0.22 | 0.25 | 0.22 | 0.25 | 0.22 |
Phase thickness (μm) | 0.25 | 0.3 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 50. | 60. | 70. | 60. |
Tend (C) | 220. | 220. | 220. | 230. | 220. |
Heat rate (K/min) | 2. | 3. | 2. | 2. | 2. |
Initial hold (min) | 1. | 2. | |||
Final hold (min) | 20. | 5. | 20. | 20. | 20. |
I | 2231. | 2188. | 2229. | 2248. | 2208. |
Reference | Gonny, Cavaleiro, et al., 2006 | Rubiolo P., Matteodo M., et al., 2006 | Boti J.B., Koukoua G., et al., 2005 | Choi, 2005 | Cozzani, Muselli, et al., 2005 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-Wax | PEG-20M | HP-Wax | DB-Wax | Supelcowax-10 |
Column length (m) | 30. | 30. | 60. | 30. | |
Carrier gas | He | N2 | He | He | |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.32 | 0.2 | |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.2 | |
Tstart (C) | 40. | 50. | 60. | 32. | 70. |
Tend (C) | 250. | 250. | 220. | 220. | 220. |
Heat rate (K/min) | 3. | 4. | 5. | 3. | 3. |
Initial hold (min) | 10. | ||||
Final hold (min) | 20. | 15. | |||
I | 2199. | 2240. | 2258. | 2238. | 2216. |
Reference | Fanciullino, Gancel, et al., 2005 | Simionatto, Porto, et al., 2005 | Bertoli, Pistelli, et al., 2004 | Brophy, Goldsack, et al., 2004 | Cavaleiro, Salgueiro, et al., 2004 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | BP-20 | BP-20 | BP-20 | RTX-Wax | DB-Wax |
Column length (m) | 50. | 50. | 50. | 60. | 60. |
Carrier gas | He | He | He | He | N2 |
Substrate | |||||
Column diameter (mm) | 0.22 | 0.22 | 0.22 | 0.22 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 60. | 60. | 70. |
Tend (C) | 220. | 230. | 230. | 230. | 230. |
Heat rate (K/min) | 2. | 2. | 2. | 2. | 2. |
Initial hold (min) | 2. | ||||
Final hold (min) | 20. | 35. | 35. | 45. | 20. |
I | 2229. | 2220. | 2220. | 2216. | 2246. |
Reference | Tam, Thuam, et al., 2004 | Bianchini, Tomi, et al., 2003 | Bianchini, Tomi, et al., 2003 | Cavalli, Tomi, et al., 2003 | Choi, 2003 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-Wax | HP-Innowax | HP-Innowax | AT-Wax | BP-20 |
Column length (m) | 60. | 30. | 30. | 60. | 50. |
Carrier gas | H2 | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.32 | 0.25 | 0.25 | 0.32 | 0.22 |
Phase thickness (μm) | 0.25 | 0.5 | 0.5 | 0.25 | 0.25 |
Tstart (C) | 40. | 60. | 60. | 65. | 60. |
Tend (C) | 245. | 260. | 260. | 250. | 230. |
Heat rate (K/min) | 1.5 | 3. | 3. | 2. | 2. |
Initial hold (min) | 10. | ||||
Final hold (min) | 20. | 60. | 35. | ||
I | 2198. | 2220. | 2240. | 2195. | 2220. |
Reference | Gancel, Ollitrault, et al., 2003 | Skaltsa, Demetzos, et al., 2003 | Tzakou, Couladis, et al., 2003 | Pino, Marbot, et al., 2002 | Bianchini, Tomi, et al., 2001 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-Innowax | AT-Wax | DB-Wax | DB-Wax | DB-Wax |
Column length (m) | 30. | 60. | 60. | 60. | 60. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.32 | 0.5 | 0.53 | 0.53 |
Phase thickness (μm) | 0.50 | 0.25 | 0.32 | 1.0 | 1.0 |
Tstart (C) | 60. | 65. | 40. | 50. | 50. |
Tend (C) | 260. | 250. | 290. | 220. | 220. |
Heat rate (K/min) | 3. | 2. | 4. | 3. | 3. |
Initial hold (min) | 10. | 2. | |||
Final hold (min) | 60. | 5. | |||
I | 2240. | 2195. | 2253. | 2238. | 2238. |
Reference | Couladis, Tzakou, et al., 2001 | Pino, Marbot, et al., 2001 | Bartley and Jacobs, 2000 | Brophy, Goldsack, et al., 2000 | Brophy, Goldsack, et al., 2000, 2 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | CP-Wax 52CB | DB-Wax | DB-Wax | Innowax | Carbowax 20M |
Column length (m) | 25. | 60. | 60. | 60. | 25. |
Carrier gas | N2 | He | He | H2 | |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.53 | 0.25 | 0.25 |
Phase thickness (μm) | 0.15 | 0.25 | 0.25 | 0.3 | |
Tstart (C) | 40. | 70. | 50. | 50. | 50. |
Tend (C) | 220. | 230. | 220. | 180. | 200. |
Heat rate (K/min) | 3. | 2. | 3. | 2.5 | 3. |
Initial hold (min) | 5. | 2. | 5. | 1. | |
Final hold (min) | 20. | 20. | |||
I | 2233. | 2246. | 2238. | 2248. | 2216. |
Reference | Chagonda, Makanda, et al., 2000 | Choi and Sawamura, 2000 | Brophy, Goldsack, et al., 1999 | Stashenko, Cervantes, et al., 1999 | Bicchi, Rubiolo, et al., 1998 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | SP-1000 | DB-Wax | DB-Wax | DB-Wax | SP-1000 |
Column length (m) | 85. | 60. | 60. | 60. | 85. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.5 | 0.32 | 0.32 | 0.32 | 0.5 |
Phase thickness (μm) | |||||
Tstart (C) | 60. | 65. | 35. | 65. | 65. |
Tend (C) | 225. | 225. | 220. | 225. | 225. |
Heat rate (K/min) | 3. | 3. | 3. | 3. | 3. |
Initial hold (min) | |||||
Final hold (min) | |||||
I | 2238. | 2238. | 2238. | 2238. | 2238. |
Reference | Brophy, Forster, et al., 1998 | Brophy, Goldsack, et al., 1998 | Brophy, Goldsack, et al., 1998, 2 | Brophy, Goldsack, et al., 1997 | Brophy, Goldsack, et al., 1997, 2 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary |
---|---|---|---|
Active phase | BP-20 | DB-Wax | Carbowax 20M |
Column length (m) | 50. | 60. | 60. |
Carrier gas | He | He | He |
Substrate | |||
Column diameter (mm) | 0.22 | 0.32 | 0.32 |
Phase thickness (μm) | 0.25 | 0.5 | |
Tstart (C) | 60. | 50. | 50. |
Tend (C) | 230. | 225. | 225. |
Heat rate (K/min) | 2. | 2. | 1.5 |
Initial hold (min) | |||
Final hold (min) | 35. | 20. | 80. |
I | 2226. | 2249. | 2222. |
Reference | Mariotti, Tomi, et al., 1997 | Sagrero-Nieves, Bartley, et al., 1997 | Chen and Ho, 1988 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI |
References
Go To: Top, Van Den Dool and Kratz RI, polar column, temperature ramp, Notes
Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.
Saroglou, Marin, et al., 2007
Saroglou, V.; Marin, P.D.; Rancic, A.; Veljic, M.; Skaltsa, H.,
Composition and antimicrobial activity of the essential oil of six Hypericum species from Serbia,
Biochem. Syst. Ecol., 2007, 35, 3, 146-152, https://doi.org/10.1016/j.bse.2006.09.009
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Blanc, Bradesi, et al., 2006
Blanc, M.-C.; Bradesi, P.; Goncalves, M.J.; Salgueiro, L.; Casanova, J.,
Essential oil of Dittrichia viscosa ssp. viscosa: analysis by 13C-NMR and antimicrobial activity,
Flavour Fragr. J., 2006, 21, 2, 324-332, https://doi.org/10.1002/ffj.1605
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Bousmaha, Boti, et al., 2006
Bousmaha, L.; Boti, J.B.; Bekkara, F.A.; Castola, V.; Casanova, J.,
Infraspecific chemical variability of the essential oil of Lavandula dentata L. from Algeria,
Flavour Fragr. J., 2006, 21, 2, 368-372, https://doi.org/10.1002/ffj.1659
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Duquesnoy, Dinh, et al., 2006
Duquesnoy, E.; Dinh, N.H.; Castola, V.; Casanova, J.,
Composition of a Pyrolytic oil from Cupressus funebris Endl. of Vietnamese origin,
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Flamini, Tebano, et al., 2006
Flamini, G.; Tebano, M.; Cioni, P.L.; Bagci, Y.; Dural, H.; Ertugrul, K.; Uysal, T.; Savran, A.,
A multivariate statistical approach to Centaurea classification using essential oil composition data of some species from Turkey,
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Gonny, Cavaleiro, et al., 2006
Gonny, M.; Cavaleiro, C.; Salgueiro, L.; Casanova, J.,
Analysis of Juniperus communis subsp. alpina needle, berry, wood and root oils by combination of GC, GC/MS and 13C-NMR,
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Rubiolo P., Matteodo M., et al., 2006
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Analytical discrimination of poisonous and nonpoisonous chemotypes of giant fennel (Ferula communis L.) through their biologically active and volatile fractions,
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Boti J.B., Koukoua G., et al., 2005
Boti J.B.; Koukoua G.; N'Guessan T.Y.; Muselli A.; Bernardini A.F.; Casanova J.,
Composition of the leaf, stem bark and root bark oils of Isolona cooperi investigated by GC (retention index), GC-MS and C-13-NMR spectroscopy,
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Choi, 2005
Choi, H.-S.,
Characteristic odor components of kumquat (Fortunella japonica Swingle) peel oil,
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Cozzani, Muselli, et al., 2005
Cozzani, S.; Muselli, A.; Desjobert, J.-M.; Bernardini, A.-F.; Tomi, F.; Casanova, J.,
Chemical composition of essential oil of Teucrium polium subsp. capitatum (L.) from Corsica,
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Fanciullino, Gancel, et al., 2005
Fanciullino, A.-L.; Gancel, A.-L.; Froelicher, Y.; Luro, F.; Ollitrault, P.; Brillouet, J.-M.,
Effects of Nucleo-cytoplasmic Interactions on Leaf Volatile Compounds from Citrus Somatic Diploid Hybrids,
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Simionatto, Porto, et al., 2005
Simionatto, E.; Porto, C.; da Silva, U.F.; Squizani, A.; Dalcol, I.I.; Morel, A.F.,
Composition and antimicrobial activity of the essential oil from Aloysia sellowii,
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Bertoli, Pistelli, et al., 2004
Bertoli, A.; Pistelli, L.; Morelli, I.; Fraternale, D.; Giamperi, L.; Ricci, D.,
Volatile constituents of different parts (roots, stems and leaves) of Smyrnium olusatrum L.,
Flavour Fragr. J., 2004, 19, 6, 522-525, https://doi.org/10.1002/ffj.1382
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Brophy, Goldsack, et al., 2004
Brophy, J.J.; Goldsack, R.J.; O'Sullivan, W.,
Chemistry of the Australian gymnosperms. Part VII. The leaf oils of the genus Actinostrobus,
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Cavaleiro, Salgueiro, et al., 2004
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Analysis by gas chromatography?mass spectrometry of the volatile components of Teucrium lusitanicum and Teucrium algarbiensis,
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Tam, Thuam, et al., 2004
Tam, N.T.; Thuam, D.T.; Bighelli, A.; Castola, V.; Muselli, A.; Richomme, P.; Casanova, J.,
Baeckea frutescens leaf oil from Vietnam: composition and chemical variability,
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Bianchini, Tomi, et al., 2003
Bianchini, A.; Tomi, P.; Bernardini, A.F.; Morelli, I.; Flamini, G.; Cioni, P.L.; Usai, M.; Marchetti, M.,
A comparative study of volatile constituents of two Helichrysum italicum (Roth) Guss. Don Fil subspecies growing in Corsica (France), Tuscany and Sardinia (Italy),
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Cavalli, Tomi, et al., 2003
Cavalli, J.-F.; Tomi, F.; Bernardini, A.-F.; Casanova, J.,
Composition and chemical variability of the bark oil of Cedrelopsis grevei H. Baillon from Madagascar,
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Choi, 2003
Choi, H.-S.,
Character impact odorants of Citrus Hallabong [(C. unshiu Marcov × C. sinensis Osbeck) × C. reticulata Blanco] cold-pressed peel oil,
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Gancel, Ollitrault, et al., 2003
Gancel, A.-L.; Ollitrault, P.; Froelicher, Y.; Tomi, F.; Jacquemond, C.; Luro, F.; Brillouet, J.-M.,
Leaf volatile compounds of seven citrus somatic tetraploid hybrids sharing willow leaf mandarin (Citrus deliciosa Ten.) as their common parent,
J. Agric. Food Chem., 2003, 51, 20, 6006-6013, https://doi.org/10.1021/jf0345090
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Skaltsa, Demetzos, et al., 2003
Skaltsa, H.D.; Demetzos, C.; Lazari, D.; Sokovic, M.,
Essential oil analysis and antimicrobial activity of eight Stachys species from Greece,
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Tzakou, Couladis, et al., 2003
Tzakou, O.; Couladis, M.; Slavkovska, V.; Mimica-Dukic, N.; Jancic, R.,
The essential oil composition of Salvia brachyodon Vandas,
Flavour Fragr. J., 2003, 18, 1, 2-4, https://doi.org/10.1002/ffj.1132
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Pino, Marbot, et al., 2002
Pino, J.A.; Marbot, R.; Vázquez, C.,
Characterization of volatile in Cosa Rican Guava [Psidium friedrichsthalianum (Berg) Niedenzu] fruit,
J. Agric. Food Chem., 2002, 50, 21, 6023-6026, https://doi.org/10.1021/jf011456i
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Bianchini, Tomi, et al., 2001
Bianchini, A.; Tomi, P.; Costa, J.; Bernardini, A.F.,
Composition of Helichrysum italicum (Roth) G. Don fil. subsp. italicum essential oils from Corsica (France),
Flavour Fragr. J., 2001, 16, 1, 30-34, https://doi.org/10.1002/1099-1026(200101/02)16:1<30::AID-FFJ941>3.0.CO;2-F
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Couladis, Tzakou, et al., 2001
Couladis, M.; Tzakou, O.; Stojanovic, D.; Mimica-Dukic, N.; Jancic, R.,
The essential oil composition of Salvia argentea L.,
Flavour Fragr. J., 2001, 16, 3, 227-229, https://doi.org/10.1002/ffj.989
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Pino, Marbot, et al., 2001
Pino, J.A.; Marbot, R.; Vázquez, C.,
Characterization of volatiles in strawberry guava (Psidium cattleianum Sabine) fruit,
J. Agric. Food Chem., 2001, 49, 12, 5883-5887, https://doi.org/10.1021/jf010414r
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Bartley and Jacobs, 2000
Bartley, J.P.; Jacobs, A.L.,
Effects of drying on flavour compounds in Australian-grown ginger (Zingiber officinale),
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Brophy, Goldsack, et al., 2000
Brophy, J.; Goldsack, R.J.; Bean, A.R.; Forster, P.I.; Lepschi, B.J.,
Leaf essential oils of the genus Leptospermum (Myrtaceae) in eastern Australia. Part 6. Leptospermum polygalifolium and allies,
Flavour Fragr. J., 2000, 15, 4, 271-277, https://doi.org/10.1002/1099-1026(200007/08)15:4<271::AID-FFJ910>3.0.CO;2-E
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Brophy, Goldsack, et al., 2000, 2
Brophy, J.J.; Goldsack, R.J.; Punruckvong, A.; Bean, A.R.; Forster, P.I.; Lepschi, B.J.; Doran, J.C.; Rozefelds, A.C.,
Leaf essential oils of the genus Leptospermum (Myrtaceae) in eastern Australia. Part 7. Leptospermum petersonii, L. liversidgei and allies,
Flavour Fragr. J., 2000, 15, 5, 342-351, https://doi.org/10.1002/1099-1026(200009/10)15:5<342::AID-FFJ924>3.0.CO;2-V
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Chagonda, Makanda, et al., 2000
Chagonda, L.S.; Makanda, C.D.; Chalchat, J.-C.,
The essential oils of Ocimum canum Sims (basilic camphor) and Ocimum urticifolia Roth from Zimbabwe,
Flavour Fragr. J., 2000, 15, 1, 23-26, https://doi.org/10.1002/(SICI)1099-1026(200001/02)15:1<23::AID-FFJ866>3.0.CO;2-W
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Choi and Sawamura, 2000
Choi, H.-S.; Sawamura, M.,
Composition of the essential oil of Citrus tamurana Hort. ex Tanaka (Hyuganatsu),
J. Agric. Food Chem., 2000, 48, 10, 4868-4873, https://doi.org/10.1021/jf000651e
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Brophy, Goldsack, et al., 1999
Brophy, J.J.; Goldsack, R.J.; Bean, A.R.; Forster, P.I.; Lepschi, B.J.,
Leaf essential oils of the genus Leptospermum (Myrtaceae) in eastern Australia. Part 5. Leptospermum continentale and allies,
Flavour Fragr. J., 1999, 14, 2, 98-104, https://doi.org/10.1002/(SICI)1099-1026(199903/04)14:2<98::AID-FFJ797>3.0.CO;2-V
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Stashenko, Cervantes, et al., 1999
Stashenko, E.E.; Cervantes, M.; Combariza, Y.; Fuentes, H.; Martínez, J.R.,
HRGC/FID and HRGC/MSD analysis of the secondary metabolites obtained by different extraction methods from Lepechinia schiedeana, an in vitro evaluation of its antioxidant activity,
J. Hi. Res. Chromatogr., 1999, 22, 6, 343-349, https://doi.org/10.1002/(SICI)1521-4168(19990601)22:6<343::AID-JHRC343>3.0.CO;2-J
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Bicchi, Rubiolo, et al., 1998
Bicchi, C.; Rubiolo, P.; Marschall, H.; Weyerstahl, P.; Laurent, R.,
Constituents of Artemisia roxburghiana Besser essential oil,
Flavour Fragr. J., 1998, 13, 1, 40-46, https://doi.org/10.1002/(SICI)1099-1026(199801/02)13:1<40::AID-FFJ688>3.0.CO;2-Z
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Brophy, Forster, et al., 1998
Brophy, J.J.; Forster, P.I.; Goldsack, R.J.,
The essential oils of three unusual Eucalypts: Eucalyptus curtisii, E. rubiginosa and E. tenuipes (Myrtaceae),
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Notes
Go To: Top, Van Den Dool and Kratz RI, polar column, temperature ramp, References
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