Maki, Toshikatsu’s team published research in Tetrahedron in 2007-08-27 | 617-55-0

Tetrahedron published new progress about Addition reaction catalysts (Ritter). 617-55-0 belongs to class esters-buliding-blocks, and the molecular formula is C6H10O5, Quality Control of 617-55-0.

Maki, Toshikatsu; Ishihara, Kazuaki; Yamamoto, Hisashi published the artcile< New boron(III)-catalyzed amide and ester condensation reactions>, Quality Control of 617-55-0, the main research area is boron catalysis carboxylic acid esterification amidation green chem; polystyrene bound alkylated boronopyridinium salt preparation catalysis esterification amidation; Ritter addition catalysis benzodioxaborole; crystal structure cyclocondensed dodecamer quaternized boronopyridinium iodide; mol structure cyclocondensed dodecamer quaternized boronopyridinium iodide.

In 1996, the authors reported that benzeneboronic acids bearing electron-withdrawing groups at the meta- or para-position are highly effective catalysts for the amide condensation reaction in less-polar solvents. The authors now report that N-alkyl-4-boronopyridinium halides are more effective catalysts than the previous ones in more polar solvents. N-Alkyl-4-boronopyridinium halides are effective not only for amide condensation between equimolar mixtures of carboxylic acids and amines but also for the esterification of α-hydroxycarboxylic acids in alc. solvents. Furthermore, perchlorocatecholborane is more effective than areneboronic acids for the amide condensation of sterically demanding carboxylic acids. Lewis acid-assisted Bronsted acid (LBA), which was prepared from a 1:2 M mixture of boric acid and tetrachlorocatechol, is effective for the Ritter reaction from alcs. and nitriles to amides. The crystal and mol. structures of a cyclocondensed dodecamer of 4-borono-1-methylpyridinium iodide were determined by x-ray crystallog.

Tetrahedron published new progress about Addition reaction catalysts (Ritter). 617-55-0 belongs to class esters-buliding-blocks, and the molecular formula is C6H10O5, Quality Control of 617-55-0.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics