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51089-62-4

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51089-62-4 Usage

General Description

4-methyl-3-phenylisoquinoline is a chemical compound with a molecular formula C16H13N. It is an isoquinoline derivative consisting of a substituted methyl group and a phenyl group attached to the isoquinoline ring system. 4-methyl-3-phenylisoquinoline has been studied for its potential pharmacological activities, including its potential as an anticancer agent. It has also been investigated for its fluorescent properties, which make it useful for applications in the field of organic electronics and materials science. The synthesis and characterization of 4-methyl-3-phenylisoquinoline have been reported in the scientific literature, and its chemical and physical properties have been studied to understand its potential applications in various fields.

Check Digit Verification of cas no

The CAS Registry Mumber 51089-62-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,1,0,8 and 9 respectively; the second part has 2 digits, 6 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 51089-62:
(7*5)+(6*1)+(5*0)+(4*8)+(3*9)+(2*6)+(1*2)=114
114 % 10 = 4
So 51089-62-4 is a valid CAS Registry Number.

51089-62-4Downstream Products

51089-62-4Relevant articles and documents

Highly Regioselective Isoquinoline Synthesis via Nickel-Catalyzed Iminoannulation of Alkynes at Room Temperature

Sun, Jian-Guo,Zhang, Xiao-Yu,Yang, Hua,Li, Ping,Zhang, Bo

supporting information, p. 4965 - 4969 (2018/09/25)

A simple and cost-efficient nickel catalytic system for the annulation of 2-haloaldimines with alkynes to synthesize 3,4-disubstituted and 3-substituted isoquinolines at room temperature has been developed. The air-stable and inexpensive Ni(dppe)Cl2 was employed as a precatalyst, and Et3N was found to be an essential additive for obtaining high yields. By using this nickel catalytic system one-pot three-component direct synthesis of isoquinolines starting with simple 2-halobenzaldehydes, tert-butylamine, and alkynes were also achieved. These reactions occur in moderate to excellent yields with complete regioselectivity. Moreover, these reactions feature a broad substrate scope, easy scalability, operational simplicity, and excellent practicality.

Palladium-catalyzed enolate arylation as a key C-C bond-forming reaction for the synthesis of isoquinolines

Pilgrim, Ben S.,Gatland, Alice E.,Esteves, Carlos H. A.,McTernan, Charlie T.,Jones, Geraint R.,Tatton, Matthew R.,Procopiou, Panayiotis A.,Donohoe, Timothy J.

, p. 1065 - 1090 (2016/01/15)

The palladium-catalyzed coupling of an enolate with an ortho-functionalized aryl halide (an α-arylation) furnishes a protected 1,5-dicarbonyl moiety that can be cyclized to an isoquinoline with a source of ammonia. This fully regioselective synthetic route tolerates a wide range of substituents, including those that give rise to the traditionally difficult to access electron-deficient isoquinoline skeletons. These two synthetic operations can be combined to give a three-component, one-pot isoquinoline synthesis. Alternatively, cyclization of the intermediates with hydroxylamine hydrochloride engenders direct access to isoquinoline N-oxides; and cyclization with methylamine, gives isoquinolinium salts. Significant diversity is available in the substituents at the C4 position in four-component, one-pot couplings, by either trapping the in situ intermediate after α-arylation with carbon or heteroatom-based electrophiles, or by performing an α,α-heterodiarylation to install aryl groups at this position. The α-arylation of nitrile and ester enolates gives access to 3-amino and 3-hydroxyisoquinolines and the α-arylation of tert-butyl cyanoacetate followed by electrophile trapping, decarboxylation and cyclization, C4-functionalized 3-aminoisoquinolines. An oxime directing group can be used to direct a C-H functionalization/bromination, which allows monofunctionalized rather than difunctionalized aryl precursors to be brought through this synthetic route.

METHODS FOR PREPARING ISOQUINOLINES

-

, (2013/03/26)

Provided herein are novel synthetic methods of making isoquinolines comprising coupling a metalated N-(2-methylbenzylidene)amine with a nitrile, followed by cyclization, to provide a substituted isoquinoline compound. This new methodology for preparing is

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