A balanced equation for a chemical reaction indicates what is reacting and what is produced, but it reveals nothing about how the reaction actually takes place. The reaction mechanism is the process, or pathway, by which a reaction occurs.4442-54-0. An updated downstream synthesis route of 4442-54-0 as follows., 90319-52-1
General procedure: n-Butyllithium (1.15mL, 1.0equiv, 2.3M in hexanes) was added to a cooled until ?75¡ãC solution of the corresponding oxazolidinone (2.6mmol) in anhydrous THF (12mL), then the resulting solution was warmed to ?30¡ãC and stirred for 20min. At the same temperature, a solution of cinnamoyl chloride (1.0equiv) in anhydrous THF (7mL) was added dropwise and then allowed to rise to at room temperature and left overnight with continuous stirring. After work-up with 10percent NH4Cl (15mL), the organic layer was separated and the aqueous layer was extracted with ethyl acetate (2¡Á25ml). The combined organic phase was dried over Na2SO4, filtered and evaporated under reduced pressure. The crude products were purified by chromatography or crystallized from appropriate solvents. 4.3.1 (R)-4-Phenyl-3-[(E)-(3-phenylacryloyl)]-oxazolidin-2-one 2a. White crystals (0.28g, 62percent yield) after crystallization (Et2O/EtOAc, 1:1); mp 169?170¡ãC. 1H NMR (200MHz, CDCl3) delta 4.32 (dd, J=3.8, 8.8Hz, 1H, NCHCH2), 4.74 (t, J=8.8Hz, 1H, NCHCH2), 5.56 (dd, J=3.8, 8.8Hz, 1H, NCHCH2), 7.28?7.48 (m, 8H, aromH), 7.52?7.66 (m, 2H, aromH), 7.78 (d, J=15.7Hz, 1H, CH=CH?CO), 7.95 (d, J=15.7Hz, 1H, CH=CH?CO). 13C NMR (75MHz, CDCl3) delta 58.0, 70.1, 117.0, 126.1, 128.7, 128.8, 129.0, 129.3, 130.8, 134.6, 139.2, 146.8, 153.9, 164.9, 90319-52-1
Other significant industrial processes that involve the use of heterogeneous catalysts include the preparation of sulfuric acid, the preparation of ammonia, the oxidation of ammonia to nitric acid, and the synthesis of methanol. 90319-52-1, if you are interested, you can browse my other articles.
Reference£º
Article; Leitis, Zigm?rs; L?sis, Viesturs; Tetrahedron Asymmetry; vol. 27; 17-18; (2016); p. 843 – 851;,
Oxazolidine – Wikipedia
Oxazolidine | C3H7NO – PubChem