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Aldehyde catalysis – from simple aldehydes to artificial enzymes

机译:醛催化 - 从简单的醛对人工酶

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Chemists have been learning and mimicking enzymatic catalysis in various aspects of organic synthesis. One of the major goals is to develop versatile catalysts that inherit the high catalytic efficiency of enzymatic processes, while being effective for a broad scope of substrates. In this field, the study of aldehyde catalysts has achieved significant progress. This review summarizes the application of aldehydes as sustainable and effective catalysts in different reactions. The fields, in which the aldehydes successfully mimic enzymatic systems, include light energy absorption/transfer, intramolecularity introduction through tether formation, metal binding for activation/orientation and substrate activation via aldimine formation. Enantioselective aldehyde catalysis has been achieved with the development of chiral aldehyde catalysts. Direct simplification of aldehyde-dependent enzymes has also been investigated for the synthesis of noncanonical chiral amino acids. Further development in aldehyde catalysis is expected, which might also promote exploration in fields related to prebiotic chemistry, early enzyme evolution, etc.
机译:化学家一直在学习和模仿有机合成的各个方面的酶促催化。其中一个主要目标是开发含有酶促过程的高催化效率的多功能催化剂,同时对底物的广泛范围有效。在该领域中,醛催化剂的研究取得了显着的进展。本综述总结了醛作为可持续和有效催化剂在不同反应中的应用。其中醛成功模仿酶系统的田地包括光能吸收/转移,分子间度通过系绳形成引入,通过醛胺形成的活化/取向和基材活化的金属结合。随着手性醛催化剂的发育,已经实现了对映选择性醛催化。还研究了醛依赖性酶的直接简化,用于合成非甘露吞噬氨基酸。预期醛催化进一步发展,也​​可能促进与益生元化学,早期酶进化等领域的探索。

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