- MDP2P
- 3,4-Methylenedioxyphenyl-2-propanone
- 3,4-Methylenedioxyphenylacetone
- PIPAC
- PMK
- Piperonyl methyl ketone
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Shulgin, AT. Basic Pharmacology and Effects In Hallucinogens. A Forensic Drug Handbook; Laing, R; Siegel, JA, Eds., Academic Press, London, 24 Apr 2003; pp 67–137. 6.3 MB.
Shulgin, AT; Jacob, P. 1-(3,4-Methylenedioxyphenyl)-3-aminobutane: A potential toxicological problem Clin. Toxicol., 1 Jan 1982, 19 (1), 109–110. 77 kB. https://doi.org/10.3109/15563658208990371 #1
Doughty, D; Painter, B; Pigou, P; Johnston, MR. The synthesis and investigation of impurities found in clandestine laboratories: Baeyer-Villiger route part II; Synthesis of phenyl-2-propanone (P2P) analogues from substituted benzaldehydes Forensic Chem., 1 Jun 2018, 9, 1–11. 2.1 MB. https://doi.org/10.1016/j.forc.2018.03.007 #5g GC,MS,NMR,other
Chambers, SA; DeSousa, JM; Huseman, ED; Townsend, SD. The DARK side of total synthesis: Strategies and tactics in psychoactive drug production ACS Chem. Neurosci., 17 Oct 2018, 9 (10), 2307–2330. 8.1 MB. https://doi.org/10.1021/acschemneuro.7b00528 #161
Dal Cason, TA. The characterization of some 3,4-methylenedioxyphenylisopropylamine (MDA) analogs J. Forensic Sci., 1 Jul 1989, 34 (4), 928–961. 734 kB. https://doi.org/10.1520/JFS12722J #9 Rhodium. GC,MS,NMR,IR
Noggle, FT; Clark, CR; DeRuiter, J. Gas chromatographic and mass spectrometric analysis of samples from a clandestine laboratory involved in the synthesis of ecstacy from sassafras oil J. Chromatogr. Sci., 1 Apr 1991, 29 (4), 168–173. 1.1 MB. https://doi.org/10.1093/chromsci/29.4.168 GC,MS
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Sorokin, V; Beljaev, A; Ponkratov, K. Expert examination of MDA JCLIC, 1 Jul 1993, 3 (3), 13-15. 556 kB. IR
Davis, S; Vallely, P. Short communication: A novel synthesis of 3,4-methylenedioxyphenyl-2-propanone (MDP2P) from helional JCLIC, 1 Jul 2017, 27 (3), 21-23. 486 kB. #4 GC
Hugel, J; Robertson, C. The synthesis of MDMA and methamphetamine from the corresponding ketones, methylamine hydrochloride, and sodium borohydride JCLIC, 1 Jan 2007, 17 (1), 15-25. 707 kB. MS,IR
Hugel, J. Debriefing of convicted drug producer JCLIC, 1 Jan 2000, 10 (1), 23-26. 532 kB. #MD-P-2-P
Plummer, CM; Breadon, TW; Pearson, JR; Jones, OAH. The synthesis and characterisation of MDMA derived from a catalytic oxidation of material isolated from black pepper reveals potential route specific impurities Sci. Justice, 1 May 2016, 56 (3), 223–230. 630 kB. https://doi.org/10.1016/j.scijus.2016.01.003 #8 GC,NMR
Dunlap, LE; Andrews, AM; Olson, DE. DARK classics in chemical neuroscience: 3,4-Methylenedioxymethamphetamine ACS Chem. Neurosci., 17 Oct 2018, 9 (10), 2408–2427. 940 kB. https://doi.org/10.1021/acschemneuro.8b00155 #12
Philp, M; Shimmon, R; Stojanovska, N; Tahtouh, M; Fu, S. Development and validation of a presumptive colour spot test method for the detection of piperazine analogues in seized illicit materials Anal. Methods, 1 Jan 2013, 5 (20), 5402. 783 kB. https://doi.org/10.1039/c3ay40511g #3,4-Methylenedioxyphenyl-2-propa MS,NMR,IR,spot
Nair, JB; Hakes, L; Yazar-Klosinski, B; Paisner, K. Fully validated, multi-kilogram cGMP synthesis of MDMA ACS Omega, 11 Jan 2022, 7 (1), 900–907. 2.6 MB. https://doi.org/10.1021/acsomega.1c05520 #4 other
Butterick, JR. Synthesis of O-transmethylated catecholamines and psychodysleptic β-phenylisopropylamines Ph. D. Thesis, Simon Faser University, Burnaby, BC, Canada, 11 Mar 1975. 6.1 MB. #49 External examiner: A. T. Shulgin! NMR,IR,UV,TLC
Shulgin, AT; Jacob, P. Potential misrepresentation of 3,4-methylene-dioxyamphetamine (MDA). A toxicological warning J. Anal. Toxicol., 1 Jan 1982, 6 (2), 71–75. 5.6 MB. https://doi.org/10.1093/jat/6.2.71 #1 GC,MS,IR
Al-Hossaini, AM. GC-MS and GC-IRD studies on ethoxyphenethylamines related to MDEA, MDMMA and MBDB Ph. D. Thesis, Auburn University, Auburn, AL, USA, 18 Dec 2009. 1.2 MB. #K7 GC,MS,IR