15408-62-5Relevant academic research and scientific papers
Direct Aryl C?H Amination with Primary Amines Using Organic Photoredox Catalysis
Margrey, Kaila A.,Levens, Alison,Nicewicz, David A.
supporting information, p. 15644 - 15648 (2017/11/20)
The direct catalytic C?H amination of arenes is a powerful synthetic strategy with useful applications in pharmaceuticals, agrochemicals, and materials chemistry. Despite the advances in catalytic C?H functionalization, the use of aliphatic amine coupling partners is limited. Described herein is the construction of C?N bonds, using primary amines, by direct C?H functionalization with an acridinium photoredox catalyst under an aerobic atmosphere. A wide variety of primary amines, including amino acids and more complex amines are competent coupling partners. Various electron-rich aromatics and heteroaromatics are useful scaffolds in this reaction, as are complex, biologically active arenes. We also describe the ability to functionalize arenes that are not oxidized by an acridinium catalyst, such as benzene and toluene, thus supporting a reactive amine cation radical intermediate.
Copper-catalyzed N- tert -butylation of aromatic amines under mild conditions using tert -butyl 2,2,2-trichloroacetimidate
Cran, John W.,Vidhani, Dinesh V.,Krafft, Marie E.
, p. 1550 - 1554 (2014/07/08)
A variety of aromatic amines have been found to expediently undergo copper-catalyzed N-tert-butylation in the presence of tert-butyl 2,2,2-trichloroactimidate at room temperature. Georg Thieme Verlag Stuttgart New York.
Efficient catalytic aryl amination of bromoarenes using 3-iminophosphine palladium(II) chloride
Samblanet, Danielle C.,Schmidt, Joseph A. R.
, p. 7 - 18,12 (2012/12/12)
While pursuing the development of new hydroamination catalysts, a 3-iminophosphine palladium(II) chloride complex [(3IP)PdCl2] was synthesized that has subsequently proven to be an effective precatalyst for the aryl amination of bromoarenes. This (3IP)PdCl2 complex has been utilized in the catalytic aryl amination of both bromobenzene and bromopyridine derivatives, specifically yielding excellent activity in coupling reactions involving bromobenzene, 4-bromotoluene, and 2-bromopyridine. Using a standard set of catalytic conditions, many alkyl and aryl amines have been investigated as coupling partners in the aryl amination of bromoarenes. In general, secondary alkyl amines and ortho-substituted anilines proved to be the best substrates for this reaction, commonly giving quantitative conversion to products, while primary amines and other anilines gave only poor to moderate results. Catalytic screening data, product yields, and full characterization of isolated products are included.
Conjugated imines and iminium salts as versatile acceptors of nucleophiles
Shimizu, Makoto,Hachiya, Iwao,Mizota, Isao
scheme or table, p. 874 - 889 (2009/07/10)
Growing interests in nitrogen-containing molecules involving bioactive and functional materials have stimulated the recent development of synthetic methodologies where nucleophilic addition reactions to imino carbons are utilized in crucial steps. This article summarizes double nucleophilic addition reactions with α,β-unsaturated aldimines, addition reactions using alkynyl imines, "umpoled" reactions of α-imino esters, and the use of iminium salts as reactive electrophiles. The Royal Society of Chemistry 2009.
Iminomalonate as a convenient electrophilic amination reagent for grignard reagents
Niwa, Yasuki,Takayama, Kazuki,Shimizu, Makoto
, p. 1819 - 1825 (2007/10/03)
Diethyl 2-[N-(p-methoxyphenyl)imino]malonate underwent amination reactions with alkyl Grignard reagents to give N-aklylation products in good yields. The obtained N-alkylation products were readily converted into N-alkyl-panisidines by the oxidative removal of the malonate moiety. The p-methoxyphenyl group was subsequently deprotected to give primary amines.
