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Nanocellulose enriches enantiomers in asymmetric aldol reactions

机译:纳米纤维素在不对称的醛醇反应中富集对映异构体

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Cellulose nanofibers obtained from wood pulp by TEMPO-mediated oxidation acted as a chiral enhancer in direct aldol reactions of 4-nitrobenzaldehyde and cyclopentanone with ( S )-proline as an organocatalyst. Surprisingly, catalytically inactive TEMPO-oxidized cellulose nanofibers enriched the ( R , R )-enantiomer in this reaction, affording 89% ee in the syn form with a very high yield (99%). Conversely, nanocellulose-free ( S )-proline catalysis resulted in poor selectivity (64% ee, syn form) with a low yield (18%). Green organocatalysis occurring on nanocellulose solid surfaces bearing regularly aligned chiral carbons on hydrophobic crystalline facets will provide new insight into asymmetric synthesis strategies for interfacial catalysis.
机译:通过Tempo介导的氧化从木浆中获得的纤维素纳米纤维作为4-硝基苯醛和环戊酮的直接醛醇反应中的手性增强剂,其与有机催化剂。令人惊讶的是,催化活性的速度氧化纤维素纳米纤维在该反应中富集(R,R) - 甲甲醚,得到89%EE以非常高的产率(99%)。相反,无纳米纤维素 - 脯氨酸催化导致选择性差(64%EE,SYN形式),产率低(18%)。在纳米纤维素固体表面上发生的绿色有机催化在疏水性结晶刻面上定期对准手性碳,将为界面催化的不对称合成策略提供新的洞察力。

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