4.6 Review

One-pot amination of aldehydes and ketones over heterogeneous catalysts for production of secondary amines

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CATALYSIS REVIEWS-SCIENCE AND ENGINEERING
卷 65, 期 2, 页码 501-568

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/01614940.2021.1942689

关键词

Amination; secondary amine; heterogeneous catalyst; reaction mechanism

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This review summarizes recent studies on the synthesis of secondary amines by one-pot amination of aldehydes and ketones over heterogeneous catalysts. Amines are key intermediates in the chemical industry and are widely used for the synthesis of various commodities. The review discusses the direct catalytic reductive amination of carbonyl compounds, the synthesis of secondary amines from carbonyl compounds and in situ generated amines, and the application of alternative hydrogen sources. It also addresses the scope of the amination reaction, the effect of solvent, reaction conditions, and catalyst properties, as well as catalyst regeneration and reuse, kinetic regularities, and kinetic modeling.
This review summarizes the recent studies on the synthesis of secondary amines by one-pot amination of aldehydes and ketones over heterogeneous catalysts. Amines are widely applied as the key intermediates in chemical industry for the synthesis of various commodities such as agrochemicals, drugs, detergents, lubricants, food-additives and polymers. Direct catalytic reductive amination of carbonyl compounds was considered which generally includes two steps: (i) formation of imines by interactions of aldehydes or ketones with amines, and (ii) subsequent hydrogenation of imines. Synthesis of secondary amines from carbonyl compounds and amines generated in situ under reaction conditions from their progenitors, e.g., respectively, alcohols or nitro-compounds, is also discussed in detail. Recent progress in application of hydrogen sources alternative to gaseous H-2, such as formic acid, NaBH4, CO and water, favored development of metal-free catalysts including solid acid catalysts. The review addresses the scope of the amination reaction with aldehydes/ketones and nitro/amine compounds of different structure, the effect of the solvent, reaction conditions and catalyst properties. In addition, catalyst regeneration and reuse, kinetic regularities and kinetic modeling with an emphasis on the continuous mode of one-pot amination have been systematically summarized and discussed. It is suggested that the future work should focus on revealing the role of the catalytically active sites addressing their acid-base properties and the correlation between catalyst properties and the reaction performance, elucidating kinetic parameters and designing feasible reactor system for further industrial implementation.

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