1H-Cycloprop[e]azulene, 1a,2,3,4,4a,5,6,7b-octahydro-1,1,4,7-tetramethyl-, [1aR-(1aα,4α,4aβ,7bα)]-
- Formula: C15H24
- Molecular weight: 204.3511
- IUPAC Standard InChIKey: SPCXZDDGSGTVAW-UHFFFAOYSA-N
- CAS Registry Number: 489-40-7
- 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. - Species with the same structure:
- Stereoisomers:
- Other names: 1H-Cycloprop[e]azulene, 1aβ,2,3,4,4aα,5,6,7bβ-octahydro-1,1,4β,7-tetramethyl-; α-Gurjunene; (-)-α-Gurjunene; 1H-Cycloprop[e]azulene, 1a,2,3,4,4a,5,6,7b-octahydro-1,1,4,7-tetramethyl-, (1aα,4α,4aβ,7bα)-; α-Gurgujene; α-Gurjenene; α-gurjinene; [1aR-(1aα,4α,4aβ,7bα)]-1a,2,3,4,4a,5,6,7b-octahydro-1,1,4,7-tetramethyl-1H-cycloprop[e]azulene
- Information on this page:
- Other data available:
- Options:
Van Den Dool and Kratz 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 | CP-Sil PONA GB | DB-5 | BP-1 | DB-5 | HP-5 |
Column length (m) | 100. | 30. | 50. | 30. | 30. |
Carrier gas | He | He | He | He | |
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) | 140. | 60. | 60. | 60. | 50. |
Tend (C) | 230. | 240. | 220. | 240. | 250. |
Heat rate (K/min) | 5. | 3. | 2. | 3. | 4. |
Initial hold (min) | 10. | 2. | 4. | ||
Final hold (min) | 25. | 20. | 10. | ||
I | 1436. | 1409. | 1412. | 1413. | 1411. |
Reference | Cunicao, Lopes, et al., 2007 | Flamini, Cioni, et al., 2007 | Lesueur, de Rocca Serra, et al., 2007 | Martins, Santos, et al., 2007 | Quijano, Salamanca, et al., 2007 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | SPB-1 | HP-5MS | HP-5MS | HP-5MS | DB-5 |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | He | He | He | He |
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) | 50. | 60. | 60. | 60. | 50. |
Tend (C) | 250. | 280. | 280. | 280. | 250. |
Heat rate (K/min) | 5. | 4. | 4. | 3. | 3. |
Initial hold (min) | 3. | 5. | 5. | ||
Final hold (min) | 15. | 10. | |||
I | 1400. | 1409. | 1409. | 1408. | 1407. |
Reference | Radulovic, Lazarevic, et al., 2007 | Radulovic, Lazarevic, et al., 2007 | Saroglou, Marin, et al., 2007 | Vagionas, Ngassapa, et al., 2007 | Yu, Liao, 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 | DB-5 | DB-5 | SPB-1 | DB-5 |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.2 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 80. | 60. | 60. | 50. | 50. |
Tend (C) | 300. | 240. | 240. | 250. | 250. |
Heat rate (K/min) | 4. | 3. | 3. | 5. | 5. |
Initial hold (min) | 2. | 2. | 3. | 3. | |
Final hold (min) | 15. | 15. | |||
I | 1409. | 1408. | 1408. | 1400. | 1409. |
Reference | Zeng, Zhao, et al., 2007 | Batista-Pereira, Fernandes, et al., 2006 | Batista-Pereira, Fernandes, et al., 2006 | Blagojevic, Radulovic, et al., 2006 | Blagojevic, Radulovic, et al., 2006 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-5 | BP-1 | HP-5 | HP-5 | HP-5 |
Column length (m) | 30. | 50. | 30. | 30. | 30. |
Carrier gas | N2 | He | N2 | He | He |
Substrate | |||||
Column diameter (mm) | 0.32 | 0.22 | 0.25 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 60. | 60. | 60. |
Tend (C) | 240. | 220. | 220. | 250. | 260. |
Heat rate (K/min) | 3. | 2. | 5. | 3. | 3. |
Initial hold (min) | 3. | 10. | |||
Final hold (min) | 5. | 20. | |||
I | 1411. | 1412. | 1408. | 1410. | 1407. |
Reference | Dob, Dahmane, et al., 2006 | Duquesnoy, Dinh, et al., 2006 | Flamini, Tebano, et al., 2006 | Javidnia, Miri, et al., 2006 | Javidnia K., Miri R., et al., 2006 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5MS | SPB-1 | SPB-1 | HP-5MS | HP-5MS |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.2 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.2 | 0.25 | 0.25 |
Tstart (C) | 60. | 50. | 70. | 60. | 60. |
Tend (C) | 280. | 250. | 220. | 280. | 300. |
Heat rate (K/min) | 3. | 5. | 3. | 4. | 3. |
Initial hold (min) | 3. | 5. | |||
Final hold (min) | 15. | 15. | |||
I | 1381. | 1402. | 1402. | 1424. | 1425. |
Reference | Pavlovic, Kovacevic, et al., 2006 | Radulovic, Mananjarasoa, et al., 2006 | Salgueiro L.R., Pinto E., et al., 2006 | Saroglou, Dorizas, et al., 2006 | Silva-Brandão, Solferini, et al., 2006 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-5 | HP-5 | HP-5 | HP-5 | HP-5MS |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | N2 | N2 | He | He |
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 | |
Tstart (C) | 50. | 60. | 60. | 60. | 60. |
Tend (C) | 250. | 220. | 220. | 260. | 250. |
Heat rate (K/min) | 5. | 5. | 5. | 3. | 4. |
Initial hold (min) | 2. | 10. | 10. | 2. | |
Final hold (min) | 20. | ||||
I | 1410. | 1408. | 1409. | 1409. | 1407. |
Reference | Su, Ho, et al., 2006 | Celik, Gokturk, et al., 2005 | Flamini, Luigi Cioni, et al., 2005 | Javidnia, Miri, et al., 2005 | Pino, Mesa, et al., 2005 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-5 | HP-5MS | SPB-1 | SPB-1 | HP-1 |
Column length (m) | 30. | 30. | 30. | 30. | 25. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.2 | 0.32 |
Phase thickness (μm) | 0.26 | 0.25 | 0.25 | 0.2 | 0.17 |
Tstart (C) | 60. | 60. | 70. | 70. | 50. |
Tend (C) | 210. | 280. | 220. | 220. | 200. |
Heat rate (K/min) | 3. | 3. | 3. | 3. | 3. |
Initial hold (min) | |||||
Final hold (min) | 15. | 15. | |||
I | 1407. | 1404. | 1402. | 1401. | 1393. |
Reference | Sati and Mathela, 2005 | Aligiannis, Kalpoutzakis, et al., 2004 | Antunes, Sevinate-Pinto, et al., 2004 | Cavaleiro, Salgueiro, et al., 2004 | Fernández-Ocaña, Gómez-Rodríguez, et al., 2004 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5 | HP-5 | HP-5MS | BP-1 | DB-5 |
Column length (m) | 30. | 30. | 30. | 50. | 30. |
Carrier gas | He | He | He | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.22 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 50. | 60. | 60. | 60. | 60. |
Tend (C) | 290. | 260. | 280. | 220. | 240. |
Heat rate (K/min) | 4. | 3. | 4. | 2. | 3. |
Initial hold (min) | 5. | ||||
Final hold (min) | 20. | 30. | |||
I | 1410. | 1409. | 1409. | 1411. | 1409. |
Reference | Flach A., Dondon R.C., et al., 2004 | Javidnia, Miri, et al., 2004 | Karioti, Hadjipavlou-Litina, et al., 2004 | Tam, Thuam, et al., 2004 | Bader, Caponi, et al., 2003 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5 | RTX-1 | Ultra-2 | HP-5 | DB-1 |
Column length (m) | 30. | 60. | 25. | 30. | 30. |
Carrier gas | He | He | H2 | N2 | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.22 | 0.25 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.33 | 0.25 | 0.25 |
Tstart (C) | 60. | 60. | 40. | 60. | 40. |
Tend (C) | 280. | 230. | 280. | 220. | 250. |
Heat rate (K/min) | 3. | 2. | 3. | 5. | 2. |
Initial hold (min) | 2. | 10. | 5. | ||
Final hold (min) | 45. | 10. | 20. | ||
I | 1409. | 1410. | 1409. | 1410. | 1392. |
Reference | Bougatsos, Meyer, et al., 2003 | Cavalli, Tomi, et al., 2003 | Ceva-Antunes, Bizzo, et al., 2003 | Dural, Bagci, et al., 2003 | de Feo, Bruno, et al., 2003 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5 | DB-5 | HP-5 | RTX-5 | HP-5 |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | He | He | He | |
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 | |
Tstart (C) | 25. | 75. | 60. | 45. | 60. |
Tend (C) | 150. | 230. | 280. | 250. | 280. |
Heat rate (K/min) | 3. | 3. | 4. | 3. | 4. |
Initial hold (min) | 5. | 10. | 5. | 6. | 5. |
Final hold (min) | 20. | ||||
I | 1412. | 1406. | 1409. | 1412. | 1409. |
Reference | Isidorov, Vinogorova, et al., 2003 | Jantan, Ling, et al., 2003 | Karioti, Skaltsa, et al., 2003 | Shellie, Marriott, et al., 2003 | Skaltsa, Demetzos, et al., 2003 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5 | SPB-1 | HP-5MS | HP-5MS | HP-5 |
Column length (m) | 30. | 30. | 30. | 30. | 30. |
Carrier gas | He | He | He | ||
Substrate | |||||
Column diameter (mm) | 0.25 | 0.20 | 0.25 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.20 | 0.25 | 0.25 | 0.25 |
Tstart (C) | 60. | 70. | 60. | 50. | 60. |
Tend (C) | 280. | 220. | 300. | 280. | 280. |
Heat rate (K/min) | 3. | 3. | 3. | 3. | 3. |
Initial hold (min) | 5. | 5. | |||
Final hold (min) | 15. | ||||
I | 1410. | 1404. | 1409. | 1409. | 1408. |
Reference | Tsiri, Kretsi, et al., 2003 | Cavaleiro, Salgueiro, et al., 2002 | Couladis, Chinou, et al., 2002 | Demetzos, Angelopoulou, et al., 2002 | Fokialakis, Magiatis, et al., 2002 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | DB-5 | HP-5 | CP Sil 5 CB | CP Sil 5 CB | HP-5 |
Column length (m) | 30. | 30. | 25. | 30. | 30. |
Carrier gas | He | He | N2 | H2 | He |
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. | 60. | 60. | 60. |
Tend (C) | 260. | 280. | 280. | 280. | 280. |
Heat rate (K/min) | 4. | 3. | 4. | 2. | 3. |
Initial hold (min) | 6. | 10. | 5. | ||
Final hold (min) | 40. | ||||
I | 1409. | 1402. | 1401. | 1401. | 1406. |
Reference | Javidnia, Miri, et al., 2002 | Kovacevic, Pavlovic, et al., 2002 | Pino, Marbot, et al., 2002 | Pino, Marbot, et al., 2002, 2 | Aligiannis, Kalpoutzakis, et al., 2001 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5MS | RTX-5 MS | DB-5 | CP Sil 5 CB | HP-5MS |
Column length (m) | 30. | 30. | 30. | 50. | 30. |
Carrier gas | He | He | H2 | He | He |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.32 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.4 | 0.25 |
Tstart (C) | 60. | 70. | 60. | 60. | 60. |
Tend (C) | 280. | 210. | 240. | 280. | 280. |
Heat rate (K/min) | 3. | 4. | 3. | 3. | 4. |
Initial hold (min) | 5. | 10. | 10. | 5. | |
Final hold (min) | 10. | 60. | |||
I | 1409. | 1394. | 1410. | 1405. | 1409. |
Reference | Giamakis, Kretsi, et al., 2001 | Hudaib, Grazia Bellardi, et al., 2001 | Nogueira, Bittrich, et al., 2001 | Pino, Marbot, et al., 2001 | Skaltsa, Mavrommati, et al., 2001 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | BPX-5 | DB-5 | DB-5 | OV-101 | CBP-1 |
Column length (m) | 50. | 30. | 30. | 25. | 30. |
Carrier gas | H2 | He | He | N2 | He |
Substrate | |||||
Column diameter (mm) | 0.22 | 0.25 | 0.25 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | ||
Tstart (C) | 60. | 60. | 60. | 50. | 60. |
Tend (C) | 180. | 240. | 240. | 200. | 240. |
Heat rate (K/min) | 4. | 3. | 3. | 5. | 4. |
Initial hold (min) | 5. | 2. | 2. | ||
Final hold (min) | 5. | ||||
I | 1422. | 1408. | 1411. | 1411. | 1406. |
Reference | Zabaras and Wyllie, 2001 | Maia, de Paula, et al., 2000 | Maia, de Paula, et al., 2000 | Menut, Bessiere, et al., 2000 | Zunino, Lopez, et al., 2000 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
Column type | Capillary | Capillary | Capillary | Capillary | Capillary |
---|---|---|---|---|---|
Active phase | HP-5 | DB-1 | HP-1 | CP Sil 5 CB | OV-1 |
Column length (m) | 30. | 60. | 60. | 25. | 25. |
Carrier gas | He | He | He | He | |
Substrate | |||||
Column diameter (mm) | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.3 | |
Tstart (C) | 50. | 50. | 50. | 60. | 50. |
Tend (C) | 280. | 220. | 250. | 260. | 200. |
Heat rate (K/min) | 4. | 4. | 2.5 | 5. | 3. |
Initial hold (min) | 5. | 5. | 1. | ||
Final hold (min) | 20. | ||||
I | 1403. | 1420. | 1422. | 1412. | 1393. |
Reference | Lazari, Skaltsa, et al., 1999 | Mirza and Sefidkon, 1999 | Stashenko, Cervantes, et al., 1999 | Weyerstahl, Marschall, 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 |
---|---|---|---|---|
Active phase | HP-5 | BP-1 | BP-1 | Methyl Silicone |
Column length (m) | 50. | 50. | 25. | |
Carrier gas | He | He | He | He |
Substrate | ||||
Column diameter (mm) | 0.26 | 0.22 | 0.22 | 0.2 |
Phase thickness (μm) | 0.25 | 0.25 | 0.25 | 0.3 |
Tstart (C) | 60. | 60. | 60. | 40. |
Tend (C) | 240. | 230. | 230. | 200. |
Heat rate (K/min) | 3. | 2. | 2. | 2. |
Initial hold (min) | ||||
Final hold (min) | 35. | 35. | ||
I | 1409. | 1420. | 1409. | 1425. |
Reference | Oprean, Tamas, et al., 1998 | Mariotti, Costa, et al., 1997 | Mariotti, Tomi, et al., 1997 | Píry, Príbela, et al., 1995 |
Comment | MSDC-RI | MSDC-RI | MSDC-RI | MSDC-RI |
References
Go To: Top, Van Den Dool and Kratz 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.
Cunicao, Lopes, et al., 2007
Cunicao, M.M.; Lopes, A.R.; Côcco, L.C.; Yamamoto, C.I.; Plocharski, R.C.B.; Miguel, M.D.; Junior, A.G.; Auer, C.G.; Miguel, O.G.,
Phytochemical and antibacterial evaluation of essential oils from Ottonia Martiana Miq. (Piperaceae),
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Lesueur, de Rocca Serra, et al., 2007
Lesueur, D.; de Rocca Serra, D.; Bighelli, A.; Hoi, T.M.; Ban, N.K.; Thai, T.H.; Casanova, J.,
Chemical composition and antibacterial activity of the essential oil of Michelia foveolata Merryll ex Dandy from Vietnam,
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Vagionas, K.; Ngassapa, O.; Runyoro, D.; Graikou, K.; Gortzi, O.; Chinou, I.,
Chemical analysis of edible aromatic plants growing in Tanzania,
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Zeng, Zhao, et al., 2007
Zeng, Y.-X.; Zhao, C.-X.; Liang, Y.-Z.; Yang, H.; Fang, H.-Z.; Yi, L.-Z.; Zeng, Z.-D.,
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Electrophysiological responses of eucalyptus brown looper Thyrinteina arnobia to essential oils of seven Eucalyptus species,
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Chemical composition of the essential oils of Serbian wild-growing Srtemisia absinthium and Artemisia vulgaris,
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Essential oil composition of four Croton species from Madagascar and their chemotaxonomy,
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Essential oils of Phlomis leucophracta, Phlomis chimerae and Phlomis grandiflora var. grandiflora from Turkey,
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Sati and Mathela, 2005
Sati, S.; Mathela, C.S.,
Essential oil composition of Valeriana hardwickii var. arnottiana from the Himalayas,
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Micromorphology of trichomes and composition of essential oil of Teucrium capitatum,
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Analysis by gas chromatography?mass spectrometry of the volatile components of Teucrium lusitanicum and Teucrium algarbiensis,
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In vivo antifungal activity of the essential oil of Bupleurum gibraltarium against plasmopara halstedii in sunflower,
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The chemistry of pollination in selected Brazilian maxillariinae orchids: Floral rewards and fragrance,
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Composition and antioxidant activity of the essential oils of Xylopia aethiopica (Dun) A. Rich. (Annonaceae) leaves, stem bark, root bark, and fresh and dried fruits, growing in Ghana,
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Baeckea frutescens leaf oil from Vietnam: composition and chemical variability,
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Composition of the essential oil of Ballota undulata, B. nigra ssp. foetida and B. saxatilis,
Flavour Fragr. J., 2003, 18, 6, 502-504, https://doi.org/10.1002/ffj.1257
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Composition and antimicrobial activity of the essential oils of Helichrysum kraussii Sch. Bip. and H. rugulosum Less. from south Africa,
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Composition and chemical variability of the bark oil of Cedrelopsis grevei H. Baillon from Madagascar,
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Analysis of volatile compounds of taperebá (Spondias mombin L.) and Cajá (Spondias mombin L.) by simultaneous distillation and extraction (SDE) and solid phase microextraction (SPME),
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Essential oil composition of two endemic Centaurea species from Turkey, Centaurea mucronifera and Centaurea chrysantha, collected in the same habitat,
Biochem. Syst. Ecol., 2003, 31, 12, 1417-1425, https://doi.org/10.1016/S0305-1978(03)00128-5
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de Feo, Bruno, et al., 2003
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Chemical composition and antibacterial activity of essential oils from Thymus spinulosus Ten. (Lamiaceae),
J. Agric. Food Chem., 2003, 51, 13, 3849-3853, https://doi.org/10.1021/jf021232f
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HS-SPME analysis of volatile organic compounds of coniferous needle litter,
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A comparative study of the constituents of the essential oils of three Cinnamomum species from Malaysia,
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Interactive use of linear retention indices on polar and apolar columns with an MS-Library for reliable characterization of Australian tea tree and other Melaleuca sp. oils,
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Essential oil analysis and antimicrobial activity of eight Stachys species from Greece,
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Composition of fruit volatiles and annual changes in the volatiles of leaves of Eucalyptus camaldulensis Dehn. growing in Greece,
Flavour Fragr. J., 2003, 18, 3, 244-247, https://doi.org/10.1002/ffj.1220
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Composition of the essential oil and micromorphology of trichomes of Teucrium salviastrum, an endemic species from Portugal,
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Couladis, Chinou, et al., 2002
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Composition and antimicrobial activity of the essential oil of Ballota pseudodictamnus L. Bentham,
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Demetzos, Angelopoulou, et al., 2002
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A comparative study of the essential oils of Cistus salviifolius in several populations of Crete (Greece),
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Fokialakis, Magiatis, et al., 2002
Fokialakis, N.; Magiatis, P.; Mitaku, S.,
Essential oil constituents of Valeriana italica and Valeriana tuberosa. Stereochemical and conformational study of 15-acetoxyvaleranone,
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Javidnia, Miri, et al., 2002
Javidnia, K.; Miri, R.; Kamalinejad, M.; Nasiri, A.,
Composition of the essential oil of Salvia mirzayanii Rech. f. Esfand from Iran,
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Kovacevic, Pavlovic, et al., 2002
Kovacevic, N.; Pavlovic, M.; Menkovic, N.; Tzakou, O.; Couladis, M.,
Composition of the essential oil from roots and rhizomes of Valeriana pancicii Halácsy Bald,
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Pino, Marbot, et al., 2002
Pino, J.A.; Marbot, R.; Quert, R.; García, H.,
Study of essential oils of Eucalyptus resinifera Smith, E. tereticornis Smith and Corymbia maculata (Hook.) K.D. Hill L.A.S. Johnson, grown in Cuba,
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Pino, Marbot, et al., 2002, 2
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Volatile compounds of Psidium salutare (H.B.K.) Berg. fruit,
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Composition and antimicrobial activity of the essential oils of five taxa of Sideritis from Greece,
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Giamakis, Kretsi, et al., 2001
Giamakis, A.; Kretsi, O.; Chinou, I.; Spyropoulos, C.G.,
Eucalyptus camaldulensis: volatiles from immature flowers and high production of 1,8-cineole and β-pinene by in vitro cultures,
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Chromatographic (GC-MS, HPLC) and virological evaluations of Salvia sclarea infected by BBWV-I,
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The ecological and taxonomic importance of flower volatiles of Clusia species (Guttiferae),
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Characterization of volatiles in strawberry guava (Psidium cattleianum Sabine) fruit,
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Skaltsa, H.D.; Mavrommati, A.; Constantinidis, T.,
A chemotaxonomic investigation of volatile constituents in Stachys subsect. Swainsonianeae (Labiatae),
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Zabaras, D.; Wyllie, S.G.,
Quantitative analysis of terpenoids in the gas phase using headspace solid-phase microextraction (HS-SPME),
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Essential oils of Toona and Cedrela species (Meliaceae): Taxonomic and ecological implications,
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Two chromene derivatives from Calyptranthes tricona,
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Essential oil of Baccharis cordobensis Heering,
Flavour Fragr. J., 2000, 15, 3, 151-152, https://doi.org/10.1002/1099-1026(200005/06)15:3<151::AID-FFJ884>3.0.CO;2-E
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Essential oils of Marrubium velutinum Sm. and Marrubium peregrinum L., growing wild in Greece,
Flavour Fragr. J., 1999, 14, 5, 290-292, https://doi.org/10.1002/(SICI)1099-1026(199909/10)14:5<290::AID-FFJ828>3.0.CO;2-4
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Essential oil composition of two Salvia species from Iran, Salvia nemorosa L. and Salvia reuterana Boiss.,
Flavour Fragr. J., 1999, 14, 4, 230-232, https://doi.org/10.1002/(SICI)1099-1026(199907/08)14:4<230::AID-FFJ816>3.0.CO;2-L
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Flavour Fragr. J., 1999, 14, 2, 121-130, https://doi.org/10.1002/(SICI)1099-1026(199903/04)14:2<121::AID-FFJ790>3.0.CO;2-K
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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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Composition and variability of the essential oil of Stachys glutinosa L. from Corsica (France),
Flavour Fragr. J., 1997, 12, 3, 205-209, https://doi.org/10.1002/(SICI)1099-1026(199705)12:3<205::AID-FFJ636>3.0.CO;2-I
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Mariotti, Tomi, et al., 1997
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Composition of the essential oil of Cistus Iadaniferus L. cultivated in corsica (France),
Flavour Fragr. J., 1997, 12, 3, 147-151, https://doi.org/10.1002/(SICI)1099-1026(199705)12:3<147::AID-FFJ631>3.0.CO;2-Q
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Fractionation of volatiles from blackcurrant (Ribes nigrum L.) by different extractive methods,
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. [all data]
Notes
Go To: Top, Van Den Dool and Kratz RI, non-polar column, temperature ramp, References
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