2,4,5-Trimethoxyphenethylamine
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2,4,5-Trimethoxyphenethylamine
2C-O, also known as 2,4,5-trimethoxyphenethylamine (2,4,5-TMPEA) or TMPEA-2, is a chemical compound of the substituted phenethylamine, phenethylamine and 2C (psychedelics), 2C families. It is a structural isomerism, positional isomer of mescaline (3,4,5-trimethoxyphenethylamine) and is the α-desmethyl structural analog, analogue of 2,4,5-trimethoxyamphetamine (TMA-2). The drug is the parent compound of the 2C-O series of drugs. 2C-O appears to be inactive in terms of psychoactive drug, psychoactive effects in humans. It was first described by Jansen in 1931. Chemistry 2C-O is a member of a class of Compound (chemistry), chemical compounds commonly known as phenethylamines. Its full chemical name is 2-(2,4,5-trimethoxyphenyl)ethanamine; it is also known as 2,4,5-trimethoxyphenethylamine and 2,4,5-TMPEA. A variety of chemical derivative, derivatives of 2C-O, named 2C-O-2 (4-ethoxy-2,5-dimethoxyphenethylamine) through 2C-O-27, have been developed and studied. One particularly notab ...
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PiHKAL
''PiHKAL: A Chemical Love Story'' is a book by Alexander Shulgin and Ann Shulgin published in 1991. The subject of the work is Psychoactive drug, psychoactive phenethylamine Derivative (chemistry), chemical derivatives, notably those that act as psychedelic drug, psychedelics and/or empathogen-entactogens. The main title, PiHKAL, is an acronym that stands for "Phenethylamines I Have Known and Loved". The book is arranged into two parts, the first part being a fictionalized autobiography of the couple and the second part describing 179 different psychedelic compounds (most of which Shulgin discovered himself), including detailed synthesis instructions, bioassays, dosages, and other commentary. The second part was made freely available by Shulgin on Erowid while the first part is available only in the printed text. While the reactions described are beyond the ability of people with a basic chemistry education, some tend to emphasize techniques that do not require difficult-to-ob ...
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2C (psychedelics)
2C (2C-''x'') is a general name for the family of psychedelic drug, psychedelic substituted phenethylamine, phenethylamines containing Methoxy, methoxy groups on the 2 and 5 carbon, positions of a benzene ring. Most of these compounds also carry lipophilic substituents at the 4 position, usually resulting in more potent and more metabolism, metabolically stable and longer acting compounds. Most of the currently known 2C compounds were first synthesized by Alexander Shulgin in the 1970s and 1980s and published in his book ''PiHKAL'' (''Phenethylamines i Have Known And Loved''). Shulgin also coined the term 2C, being an acronym for the 2 carbon atoms between the benzene ring and the amino group. 2C-B is the most popular of the 2C drugs. Use The 2C drugs are oral administration, orally active, are used at oral doses of 6 to 150mg depending on the drug, and have duration of action, durations of 3 to 48hours depending on the drug. However, many have doses in the range of 10 to 60mg an ...
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Psychedelic Phenethylamines And Related Compounds
Psychedelics are a subclass of hallucinogenic drugs whose primary effect is to trigger non-ordinary mental states (known as psychedelic experiences or "trips") and a perceived "expansion of consciousness". Also referred to as classic hallucinogens or serotonergic hallucinogens, the term ''psychedelic'' is sometimes used more broadly to include various other types of hallucinogens as well, such as those which are atypical or adjacent to psychedelia like salvia and MDMA, respectively. Classic psychedelics generally cause specific psychological, visual, and auditory changes, and oftentimes a substantially altered state of consciousness. They have had the largest influence on science and culture, and include mescaline, LSD, psilocybin, and DMT. There are a large number of both naturally occurring and synthetic serotonergic psychedelics. Most psychedelic drugs fall into one of the three families of chemical compounds: tryptamines, phenethylamines, or lysergamides. They produce the ...
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