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50919-07-8

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50919-07-8 Usage

Description

(S)-1-(3-methoxyphenyl)ethylamine, also known as 3-Methoxyamphetamine, is a chemical compound belonging to the phenethylamine and amphetamine classes. It features a molecular formula of C9H13NO and exhibits psychoactive properties with stimulant effects on the central nervous system. (S)-1-(3-methoxyphenyl)ethylamine is a derivative of amphetamine, characterized by a methyl substituent at the alpha carbon, a methoxy group on the phenyl ring, and an ethylamine chain. Although 3-Methoxyamphetamine is not well-studied, it is recognized for its potential in research and is considered a controlled substance due to its psychoactive nature.

Uses

Used in Research Applications:
(S)-1-(3-methoxyphenyl)ethylamine is used as a research chemical for studying the effects and mechanisms of action of psychoactive substances, particularly within the phenethylamine and amphetamine classes. Its application in research aids in understanding the structure-activity relationships and potential therapeutic uses of related compounds.
Used in Pharmaceutical Development:
In the pharmaceutical industry, (S)-1-(3-methoxyphenyl)ethylamine may be utilized as a starting material or intermediate in the synthesis of novel drugs with potential applications in treating various central nervous system disorders. Its structural similarity to known stimulants makes it a valuable compound for exploring new therapeutic avenues.

Check Digit Verification of cas no

The CAS Registry Mumber 50919-07-8 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,0,9,1 and 9 respectively; the second part has 2 digits, 0 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 50919-07:
(7*5)+(6*0)+(5*9)+(4*1)+(3*9)+(2*0)+(1*7)=118
118 % 10 = 8
So 50919-07-8 is a valid CAS Registry Number.

50919-07-8Relevant articles and documents

Optical Resolution of 1-(3-Methoxyphenyl)ethylamine with Enantiomerically Pure Mandelic Acid, and the Crystal Structure of Less-Soluble Diastereomeric Salt

Sakai, Kenichi,Hashimoto, Yukihiko,Kinbara, Kazushi,Saigo, Kazuhiko,Murakami, Hisamichi,Nohira, Hiroyuki

, p. 3414 - 3418 (1993)

Enantiomerically pure 1-(3-methoxyphenyl)ethylamine (1), which is a key intermediate of new phenyl carbamate drugs, was obtained by a diastereomeric method with high resolution efficiency (E) by using enantiomerically pure mandelic acid (2) as a resolving agent.The first crystallization of the mixture of diastereomeric salts from methanol gave a less-soluble diastereomeric salt in 70percent yield with 99percent diastereomeric excess.Recrystallization of the salt from 2-propanol gave (R)-1*(R)-2 in 97percent yield with 100percent diastereomeric excess (total E=68percent).The crystal structure of the less-soluble diastereomeric salt, (R)-1*(R)-2, was determined by X-ray crystallography.The crystal data are: Monoclinic, space group P21, a=12.642(4), b=5.890(2), c=10.855(4) Angstroem, β=103.68(3) deg, V=785.4(5) Angstroem3, Z=2, R=0.058 for 1450 unique reflections.The X-ray crystallography revealed that the high resolution efficiency was due to a layer-like arrangement of the enantiomerically pure acids, of which two layers sandwiched a layer of the amines by hydrogen bonds, as well as the helical column formed by hydrogen bonds between the acids and the amines, as observed for the less-soluble diastereomeric salt of 1-phenylethylamine with mandelic acid.

Oxidation Under Reductive Conditions: From Benzylic Ethers to Acetals with Perfect Atom-Economy by Titanocene(III) Catalysis

Funk, Pierre,Richrath, Ruben B.,Bohle, Fabian,Grimme, Stefan,Gans?uer, Andreas

, p. 5482 - 5488 (2021/02/03)

Described here is a titanocene-catalyzed reaction for the synthesis of acetals and hemiaminals from benzylic ethers and benzylic amines, respectively, with pendant epoxides. The reaction proceeds by catalysis in single-electron steps. The oxidative addition comprises an epoxide opening. An H-atom transfer, to generate a benzylic radical, serves as a radical translocation step, and an organometallic oxygen rebound as a reductive elimination. The reaction mechanism was studied by high-level dispersion corrected hybrid functional DFT with implicit solvation. The low-energy conformational space was searched by the efficient CREST program. The stereoselectivity was deduced from the lowest lying benzylic radical structures and their conformations are controlled by hyperconjugative interactions and steric interactions between the titanocene catalyst and the aryl groups of the substrate. An interesting mechanistic aspect is that the oxidation of the benzylic center occurs under reducing conditions.

Ultra-small cobalt nanoparticles from molecularly-defined Co-salen complexes for catalytic synthesis of amines

Beller, Matthias,Chandrashekhar, Vishwas G.,Gawande, Manoj B.,Jagadeesh, Rajenahally V.,Kalevaru, Narayana V.,Kamer, Paul C. J.,Senthamarai, Thirusangumurugan,Zbo?il, Radek

, p. 2973 - 2981 (2020/03/27)

We report the synthesis of in situ generated cobalt nanoparticles from molecularly defined complexes as efficient and selective catalysts for reductive amination reactions. In the presence of ammonia and hydrogen, cobalt-salen complexes such as cobalt(ii)-N,N′-bis(salicylidene)-1,2-phenylenediamine produce ultra-small (2-4 nm) cobalt-nanoparticles embedded in a carbon-nitrogen framework. The resulting materials constitute stable, reusable and magnetically separable catalysts, which enable the synthesis of linear and branched benzylic, heterocyclic and aliphatic primary amines from carbonyl compounds and ammonia. The isolated nanoparticles also represent excellent catalysts for the synthesis of primary, secondary as well as tertiary amines including biologically relevant N-methyl amines.

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