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首页> 外文期刊>Catalysis science & technology >Enantioselective Michael addition of aldehydes to maleimides catalysed by surface-adsorbed natural amino acids
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Enantioselective Michael addition of aldehydes to maleimides catalysed by surface-adsorbed natural amino acids

机译:对映选择性迈克尔添加醛在由表面吸附的天然氨基酸催化的马来酰亚胺中添加

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摘要

Asymmetric Michael addition of carbonyl compounds to N-substituted maleimides is an important method for obtaining optically pure succinimides, which are important chiral fine chemical intermediates. Environmentally friendly and sustainable procedures require the use of a heterogeneous, recyclable catalyst obtained from natural chirality sources and cheap auxiliaries. Here we report the application of in situ formed chiral inorganic-organic hybrid catalysts using amino acids such as l-phenylalanine and clay minerals or alumina, which were highly active and provided excellent enantioselectivities, up to 99%, in the addition of aldehydes to a large variety of N-substituted maleimides. Examinations indicated the occurrence of the asymmetric reaction on the surface of the recyclable solid hybrid materials. The catalytic materials were examined by thermogravimetry, XRD, FT-IR and Raman spectroscopy, SEM and adsorption experiments. Results of these methods showed that the amino acid is deposited as surface crystallites or intercalated in the layered cation exchangers, which both function as a supply of the chirality source, whereas the reactions are catalysed by the chiral compounds adsorbed on the surface. This catalytic system was used to conveniently prepare chiral succinimides at the gram scale, easily purified by crystallization. Accordingly, these chiral hybrid materials are convenient heterogeneous catalysts for obtaining valuable compounds in high optical purities using natural chirality sources, inorganic solids and ethyl acetate, a green organic solvent.
机译:非对称的迈克尔在N-取代的马来酰亚胺中添加羰基化合物是获得光学纯琥珀酰亚胺的重要方法,这些方法是重要的手性精细化学中间体。环保和可持续的程序需要使用从天然手性来源和廉价辅助机构获得的异质,可回收催化剂。在这里,我们报告了使用氨基酸(例如L-苯基丙氨酸和粘土矿物或氧化铝)的氨基酸的现场形成的手性无机杂化催化剂的应用,它们具有高度活跃,并提供了极好的对映选择性,最高为99%,高达99%多种N-取代的马来酰亚胺。检查表明在可回收固体杂交材料表面发生了不对称反应。通过热重测定,XRD,FT-IR和拉曼光谱,SEM和吸附实验检查催化材料。这些方法的结果表明,将氨基酸沉积为表面晶体或在分层的阳离子交换器中插入,这两者都充当手性源的供应,而反应是由手性化合物催化的,这些化合物被吸附在表面上。该催化系统用于方便地以克尺度制备手性琥珀酰亚胺,很容易通过结晶纯化。因此,这些手性杂交材料是方便的异质催化剂,用于使用天然手性源,无机固体和乙酸乙酯(一种绿色有机溶剂)获得高光学纯度的有价值化合物。

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