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282543-39-9

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282543-39-9 Usage

Chemical compound

2-amino-5-bromo-4-methoxy-6-phenylpyrimidine

Uses

Intermediate in the synthesis of pharmaceutical drugs and agrochemicals

Structure

Pyrimidine ring with an amino group at the 2-position, a bromine atom at the 5-position, a methoxy group at the 4-position, and a phenyl group at the 6-position

Physical properties

White to off-white solid

Molecular weight

305.13 g/mol

Applications

Potential in the development of novel drugs and agricultural products due to its structural properties

Check Digit Verification of cas no

The CAS Registry Mumber 282543-39-9 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 2,8,2,5,4 and 3 respectively; the second part has 2 digits, 3 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 282543-39:
(8*2)+(7*8)+(6*2)+(5*5)+(4*4)+(3*3)+(2*3)+(1*9)=149
149 % 10 = 9
So 282543-39-9 is a valid CAS Registry Number.

282543-39-9Relevant articles and documents

Structural studies on bioactive compounds. Part 29: Palladium catalysed arylations and alkynylations of sterically hindered immunomodulatory 2-amino- 5-halo-4,6-(disubstituted)pyrimidines

Hannah, Duncan R.,Sherer, Edward C.,Davies, Roy V.,Titman, Roger B.,Laughton, Charles A.,Stevens, Malcolm F. G.

, p. 739 - 750 (2000)

The immunological agent bropirimine 5 is a tetra-substituted pyrimidine with anticancer and interferon-inducing properties. Synthetic routes to novel 5-aryl analogues of bropirimine have been developed and their potential molecular recognition properties analysed by molecular modelling methods. Sterically challenged 2-amino-5-halo-6-phenylpyrimidin-4-ones (halo=Br or I) are poor substrates for palladium catalysed Suzuki cross-coupling reactions with benzeneboronic acid because the basic conditions of the reaction converts the amphoteric pyrimidinones to their unreactive enolic forms. Palladium-mediated reductive dehalogenation of the pyrimidinone substrates effectively competes with cross-coupling. 2-Amino-5-halo-4-methoxy-6- phenylpyrimidines can be converted to a range of 5-aryl derivatives with the 5-iodopyrimidines being the most efficient substrates. Hydrolysis of the 2- amino-5-aryl-4-methoxy-6-phenylpyrimidines affords the required pyrimidin-4- ones in high yields. Semi-empirical quantum mechanical calculations show how the nature of the 5-substituent influences the equilibrium between the 1H- and 3H-tautomeric forms, and the rotational freedom about the bond connecting the 6-phenyl group and the pyrimidine ring. Both of these factors may influence the biological properties of these compounds. (C) 2000 Elsevier Science Ltd.

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