Dipartimento di Chimica, Università degli Studi di Milano, Via Golgi 19, 20133 Milano, Italy.
Molecules. 2019 Dec 14;24(24):4588. doi: 10.3390/molecules24244588.
Carbohydrates are abundant renewable resources and are a feedstock for green chemistry and sustainable synthesis of the future. Among the hexoses and the pentoses present in biomass, mannitol was selected in the present project as a valuable platform, directly available from the chiral pool, to build highly functionalized molecules. Starting from ()-2,3-O-cyclohexylidene glyceraldehyde, which is easily prepared in a large scale from D-mannitol, an enantiopure chiral nitro alkene was prepared by reaction with nitromethane, and its reactivity studied. Organocatalytic Michael addition of dimethyl malonate, β-keto esters, and other nucleophiles on the nitro alkene afforded high stereoselectivity and densely functionalized chiral molecules, which were further synthetically developed, leading to five-membered lactones and bicyclic lactams. Preliminary studies showed that the metal-free catalytic reaction on the chiral nitro alkene can be performed under continuous flow conditions, thus enabling the use of (micro)mesofluidic systems for the preparation of enantiomerically pure organic molecules from the chiral pool.
碳水化合物是丰富的可再生资源,是绿色化学和未来可持续合成的原料。在生物质中存在的己糖和戊糖中,甘露醇在本项目中被选为一种有价值的平台,它直接来自手性池,可用于构建高度功能化的分子。从()-2,3-O-环己基甘油醛开始,它可以很容易地从 D-甘露醇大规模制备,通过与硝基甲烷反应制备出对映纯的手性硝基烯烃,并研究了其反应性。手性有机催化的丙二酸二甲酯、β-酮酯和其他亲核试剂对硝基烯烃的迈克尔加成反应具有高立体选择性,生成了高度官能化的手性分子,进一步进行了合成开发,得到了五元内酯和双环内酰胺。初步研究表明,在手性硝基烯烃的无金属催化反应可以在连续流条件下进行,从而可以使用(微)中孔流体制备系统从手性池中制备对映体纯的有机分子。