2-Cyclohexen-1-ol, 3-methyl-6-(1-methylethyl)-, cis-
- Formula: C10H18O
- Molecular weight: 154.2493
- IUPAC Standard InChIKey: HPOHAUWWDDPHRS-NXEZZACHSA-N
- CAS Registry Number: 16721-38-3
- 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: p-Menth-1-en-3-ol, cis-; cis-p-Menth-1-en-3-ol; cis-Piperitol; 6-Isopropyl-3-methyl-2-cyclohexen-1-ol-, cis-; (Z)-Piperitol; 2-Cyclohexen-1-ol, 3-methyl-6-(1-methylethyl)-, (1R,6S)-rel-; cis-6-(Isopropyl)-3-methylcyclohex-2-en-1-ol; cis-3-Methyl-6-isopropyl-2-cyclohexen-1-ol
- Permanent link for this species. Use this link for bookmarking this species for future reference.
- Information on this page:
- Other data available:
- Options:
Normal alkane RI, non-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 | DB-1-MS | HP-5MS | RTX-1 | RTX-1 | HP-5 MS |
Column length (m) | 60. | 30. | 60. | 60. | 30. |
Carrier gas | Helium | Helium | Helium | Helium | Helium |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.22 | 0.22 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 30. | 50. | 60. | 60. | 50. |
Tend (C) | 200. | 250. | 230. | 230. | 230. |
Heat rate (K/min) | 2. | 7. | 2. | 2. | 3. |
Initial hold (min) | 4. | 1. | 10. | ||
Final hold (min) | 35. | 5. | 30. | 30. | 10. |
I | 1178. | 1203. | 1181. | 1181. | 1193. |
Reference | Takeoka, Hobbs, et al., 2010 | Zouari, Zouari, et al., 2010 | Museli, Pau, et al., 2009 | Museli, Pau, et al., 2009 | Adams, Beauchamp, et al., 2007 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-5 | HP-5 | DB-5 | DB-5 | ZB-5 |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | N2 | Helium | He | |
Substrate | |||||
Column diameter (mm) | 0.26 | 0.25 | 0.26 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 50. | 60. | 60. | 60. |
Tend (C) | 240. | 240. | 290. | 210. | 220. |
Heat rate (K/min) | 3. | 5. | 3. | 30. | 4. |
Initial hold (min) | 1. | 3. | 5. | ||
Final hold (min) | 4. | 20. | |||
I | 1195. | 1193. | 1195. | 1194. | 1193. |
Reference | Bos, Woerdenbag, et al., 2007 | Cheraif, Ben Jannet, et al., 2007 | Elfami, Bos, et al., 2007 | Ghasemi, Yamini, et al., 2007 | Mohottalage, Tabacchi, et al., 2007 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5MS | AT-5 | SPB-1 | HP-5 | DB-5 |
Column length (m) | 30. | 60. | 30. | 30. | 30. |
Carrier gas | He | He | Helium | He | Helium |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.20 | 0.32 | 0.26 |
Phase thickness (μm) | 0.25 | 0.25 | 0.20 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 70. | 60. | 60. |
Tend (C) | 280. | 200. | 220. | 246. | 290. |
Heat rate (K/min) | 3. | 4. | 3. | 3. | 3. |
Initial hold (min) | |||||
Final hold (min) | 20. | 15. | |||
I | 1167. | 1196. | 1177. | 1196. | 1195. |
Reference | Tzakou, Bazos, et al., 2007 | Borges, Rojas, et al., 2006 | Cavaleiro, Pinto, et al., 2006 | Coronel, Cerda-Garcia-Rojas, et al., 2006 | Elfami, Komar, et al., 2006 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | CP Sil 5 CB | DB-5 | DB-1 | DB-5 | DB-5 |
Column length (m) | 30. | 30. | 60. | 30. | 30. |
Carrier gas | N2 | Hydrogen | Helium | He | He |
Substrate | |||||
Column diameter (mm) | 0.32 | 0.25 | 0.25 | 0.32 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | |
Tstart (C) | 50. | 70. | 60. | 60. | 60. |
Tend (C) | 300. | 280. | 250. | 240. | 230. |
Heat rate (K/min) | 4. | 4. | 5. | 3. | 3. |
Initial hold (min) | 4. | ||||
Final hold (min) | 10. | 20. | |||
I | 1186. | 1193. | 1182. | 1194. | 1196. |
Reference | Lis and Milczarek, 2006 | Pino, Marbot, et al., 2006 | Sonboli, Mirjalili, et al., 2006 | Khayyat and Karimi, 2005 | Skoula and Grayer, 2005 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5MS | DB-5 | DB-5 | DB-5 | DB-5 |
Column length (m) | 30. | 30. | 60. | 60. | 50. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.32 | 0.32 | 0.2 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | ||
Tstart (C) | 60. | 90. | 50. | 50. | 50. |
Tend (C) | 280. | 220. | 220. | 200. | 220. |
Heat rate (K/min) | 3. | 7. | 3. | 3. | 3. |
Initial hold (min) | 2. | 2. | |||
Final hold (min) | 5. | ||||
I | 1169. | 1189. | 1200. | 1215. | 1198. |
Reference | Tzakou, Bazos, et al., 2005 | Agnihotri, Thappa, et al., 2004 | Edris and Farrag, 2003 | Edris, Shalaby, et al., 2003 | Masotti, Juteau, et al., 2003 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-5 | HP-5 | DB-1 | DB-5 | HP-1 |
Column length (m) | 30. | 30. | 60. | 30. | 30. |
Carrier gas | H2 | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.249 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 50. | 60. | 70. |
Tend (C) | 280. | 280. | 280. | 300. | 220. |
Heat rate (K/min) | 4. | 3. | 4. | 3. | 3. |
Initial hold (min) | 10. | ||||
Final hold (min) | 40. | 5. | 15. | ||
I | 1193. | 1178. | 1183. | 1193. | 1177. |
Reference | Pino, Marbot, et al., 2003 | Pitarokili, Tzakou, et al., 2003 | Shahmir, Ahmadi, et al., 2003 | Bos, Koulman, et al., 2002 | Cavaleiro, Salgueiro, et al., 2002 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5 | RTX-1 | DB-1 | DB-5 | SE-54 |
Column length (m) | 30. | 30. | 25. | 30. | 30. |
Carrier gas | N2 | He | He | Hydrogen | |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 50. | 60. | 60. |
Tend (C) | 240. | 300. | 290. | 240. | 250. |
Heat rate (K/min) | 3. | 4. | 4. | 3. | 2. |
Initial hold (min) | 5. | ||||
Final hold (min) | 2. | ||||
I | 1199. | 1185. | 1193. | 1194. | 1200. |
Reference | Novak, Langbehn, et al., 2002 | Kalemba, 1999 | Koulman, 1999 | Maia, Zohhbi, et al., 1998 | Kollmannsberger, Nitz, et al., 1992 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary |
---|---|
Active phase | BP-1 |
Column length (m) | 50. |
Carrier gas | H2 |
Substrate | |
Column diameter (mm) | 0.30 |
Phase thickness (μm) | |
Tstart (C) | 40. |
Tend (C) | 250. |
Heat rate (K/min) | 10. |
Initial hold (min) | 1. |
Final hold (min) | |
I | 1195. |
Reference | Brophy, Davies, et al., 1989 |
Comment | MSDC-RI |
References
Go To: Top, Normal alkane RI, non-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.
Takeoka, Hobbs, et al., 2010
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Volatile constituents of the aerial parts of Salvia apiana Jepson,
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Volatile constituents of Achllea ligustica All. by HS-SPME/GC/GC-MS. Comparison with essential oils obtained by hydrodistillation from Corsica and Sardinia,
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New Natural Products Isolated from One-Seeded Juniperus of the Southwestern United States: Isolation and Occurence of 2-Ethenyl-3-methyl Phanol and Its Derivatives,
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Essential Oil Constituents of Piper cubeba from Indonesia, 2007, 53-60. [all data]
Ghasemi, Yamini, et al., 2007
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Comparative analysis of the oil and supercritical CO2 extract of Artemisia sieberi,
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Mohottalage, S.; Tabacchi, R.; Guerin, P.M.,
Components from Sri Lankan Piper betle L. leaf oil and their analogues showing toxicity against the housefly, Musca domestica,
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Volatile metabolites of Pistacia atlantica Desf. from Greece,
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Chemical composition, seasonal variation and a new sesquiterpene alcohol from the essential oil of Lippia integrifolia,
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Elfami, Komar, et al., 2006
Elfami, R.B.; Komar, R.; Woerdenbag, H.J.; Kayser, P.; Quax, W.J.,
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Lis and Milczarek, 2006
Lis, A.; Milczarek, J.,
Chemical composition of the essential oils from fruits, leaves and flowers of Phellodendron sachalinense (Fr. Schmidt) Sarg.,
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Sonboli, Mirjalili, et al., 2006
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Khayyat, M.H.; Karimi, H.,
Composition of the volatile oils of three different species of Artemisia,
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Skoula and Grayer, 2005
Skoula, M.; Grayer, R.J.,
Volatile oils of Coridothymus capitatus, Satureja thymbra, Satureja spinosa and Thymbra calostachya (Lamiaceae) from Crete,
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Essential oils of leaves, inflorescences and infructescences of spontaneous Cotinus coggygria Scop. from Greece,
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Agnihotri, Thappa, et al., 2004
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Essential oil composition of aerial parts of Angelica glauca growing wild in North-West Himalaya (India),
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Edris and Farrag, 2003
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Antifungal activity of peppermint and sweet basil essential oils and their major aroma constituents on some plant pathogenic fungi from the vapor phase,
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Effect of organic agriculture practices on the volatile aroma components of some essential oil plants growing in Egypt II: sweet Marjoram (Origanum marjorana L.) essential oil,
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Masotti, Juteau, et al., 2003
Masotti, V.; Juteau, F.; Bessière, J.M.; Viano, J.,
Seasonal and phenological variations of the essential oil from the narrow endemic species Artemisia molinieri and its biological activities,
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Pino, Marbot, et al., 2003
Pino, J.A.; Marbot, R.; Fuentes, V.,
Characterization of volatiles in Bullock's heart (Annona reticulata L.) fruit cultivars from Cuba,
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Pitarokili, Tzakou, et al., 2003
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Bos, Koulman, et al., 2002
Bos, R.; Koulman, A.; Woerdenbag, H.J.; Quax, W.J.; Pras, N.,
Volatile components from Anthriscus sylvestris (L.) Hoffm.,
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Cavaleiro, Salgueiro, et al., 2002
Cavaleiro, C.; Salgueiro, L.; Barroso, J.G.; Figueiredo, A.C.; Pedro, L.G.; Fontinha, S.S.; Bighelli, A.; Casanova, J.; Looman, A.; Scheffer, J.J.C.,
Composition of the essential oil of Juniperus cedrus Webb and Berth. grown on Madeira,
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Novak, Langbehn, et al., 2002
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Kalemba, 1999
Kalemba, D.,
Constituents of the essential oil of Artemisia asiatica Nakai,
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Maia, Zohhbi, et al., 1998
Maia, J.G.S.; Zohhbi, M.G.B.; Andrade, E.H.A.; Santos, A.S.; da Silva, M.H.L.; Luz, A.I.R.; Bastos, C.N.,
Constituents of the essential oil of Piper aduncum L. growing wild in the Amazon region,
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Kollmannsberger, Nitz, et al., 1992
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Brophy, Davies, et al., 1989
Brophy, J.J.; Davies, N.W.; Southwell, I.A.; Stiff, I.A.; Williams, L.R.,
Gas chromatographic quality control for oil of Melaleuca terpinen-4-ol type (Australian tea tree),
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Notes
Go To: Top, Normal alkane RI, non-polar column, temperature ramp, References
- Symbols used in this document:
Tend Final temperature Tstart Initial temperature - Data from NIST Standard Reference Database 69: NIST Chemistry WebBook
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