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|JWH-015
Names: JWH-015 (primary)
(2-Methyl-1-propyl-1H-indol-3-yl)(naphthalen-1-yl)methanone (IUPAC)
Molecular formula: C23H21NO
Nominal mass: 327
Average mass: 327.4189
Monoisotopic mass: 327.162314
CAS registry number: 155471-08-2
ChemSpider: 3480676
PubChem: 4273754
Wikipedia: JWH-015
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Standard InChI: InChI=1S/C23H21NO/c1-3-15-24-16(2)22(20-12-6-7-14-21(20)24)23(25)19-13-8-10-17-9-4-5-11-18(17)19/h4-14H,3,15H2,1-2H3
Standard InChI key: LJSBBBWQTLXQEN-UHFFFAOYSA-N
SMILES: CCCn1c(C)c(c2c1cccc2)C(=O)c1cccc2c1cccc2
Tags: cannabinoid
 
Property Value Remarks
Property Value Remarks
Location Type Remarks
JWH-015 MS.pdf EI MS From SWGDRUG Library
Vendor ID URL
Cayman Chemical 10009018 https://www.caymanchem.com/app/template/Product.vm/catalog/10009018
LGC LGCFOR1275.72 http://www.lgcstandards.com/epages/LGC.sf/en_GB/?ObjectPath=/Shops/LGC/Products/LGCFOR1275.72
Sigma Aldrich J4252 http://www.sigmaaldrich.com/catalog/product/sigma/j4252?lang=en®ion=US
Tocris Bioscience 1341 http://www.tocris.com/dispprod.php?ItemId=2345
Toronto Research Chemicals J211350 https://www.trc-canada.com/detail.php?CatNum=J211350
Title Publication Date Vol. Iss. Page(s) Remarks
A new pyrazole-carboxamide type synthetic cannabinoid AB-CHFUPYCA [N-(1-amino-3-methyl-1-oxobutan-2-yl)-1-(cyclohexylmethyl)-3-(4-fluorophenyl)-1H-pyrazole-5-carboxamide] identified in illegal product Forensic Toxicology 2015-07-01 Vol 33 (367-373) Nahoko Uchiyama et al
Consideration of the major cannabinoid agonists 2009-07-00 Advisory Council on the Misuse of Drugs
Understanding the Spice phenomenon 2009-00-00 European Monitoring Centre for Drugs and Drug Addiction
Further consideration of the synthetic cannabinoids 2012-10-18 Advisory Council on the Misuse of Drugs
GC–MS and FTIR evaluation of the six benzoyl-substituted-1-pentylindoles: Isomeric synthetic cannabinoids Talanta 2014-11-01 Vol 129 (171-182) Forrest T. Smitha et al
Detection and identification of the new potential synthetic cannabinoids 1-pentyl-3-(2-iodobenzoyl)indole and 1-pentyl-3-(1-adamantoyl)indole in seized bulk powders in Hungary Forensic Science International 2012-01-01 Vol 214 (27-32) Péter Jankovics et al
Synthetic cannabinoids and cathinones: prevalence and markets Forensic Science Review 2013-03-01 Vol 25 (7-26) Bretteville-Jensen et al
Identification and analytical properties of new synthetic cannabimimetics bearing 2,2,3,3-tetramethylcyclopropanecarbonyl moiety Forensic Science International 2013-03-10 Vol 226 (62-73) Vadim Shevyrin et al
Spice, bath salts, and the U.S. military: the emergence of synthetic cannabinoid receptor agonists and cathinones in the U.S. Armed Forces. 2012-09-01 Loeffler G, Hurst D, Penn A, Yung K
Synthetic cannabinoid and marijuana exposures reported to poison centers Hum Exp Toxicol 2012-10-31 (1006-1011) MB Forrester et al
Separation and structural characterization of the synthetic cannabinoids JWH-412 and 1-[(5-fluoropentyl)-1H-indol-3yl]-(4-methylnaphthalen-1-yl)methanone using GC–MS, NMR analysis and a flash chromato Forensic Science International 2012-07-12 Vol 220 (e17-e22) Bjoern Moosmann et al
Cannabinoid chemistry: an overview Cannabinoids as Therapeutics 2005-01-01 (23-46) Lumír O. Hanuš and Raphael Mechoulam
Identification and quantitation of two cannabimimetic phenylacetylindoles JWH-251 and JWH-250, and four cannabimimetic naphthoylindoles For. Toxicology 2011-01-01 Vol 29 Nahoko Uchiyama et. al.
Rapid identification of synthetic cannabinoids in herbal samples via direct analysis in real time mass spectrometry Rapid Comm. in Mass Spec 2012-05-15 Vol 26 (1109-1114) Rabi A. Musah et al
The emergence and analysis of synthetic cannabinoids Drug Testing and Analysis 2011-08-01 Vol 3 (466-478) Simon Hudson and John Ramsey
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