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利用氨合成伯胺:多相催化剂的最新进展

Employing Ammonia for the Synthesis of Primary Amines: Recent Achievements over Heterogeneous Catalysts.

作者信息

Zhang Mingkai, Qi Zening, Xie Min, Qu Yongquan

机构信息

School of Science, Xi'an University of Technology, Xi'an, 710048, China.

Xi'an Yiwei Putai Environmental Protection Co., LTD, Xi'an, 710072, China.

出版信息

ChemSusChem. 2025 Feb 1;18(3):e202401550. doi: 10.1002/cssc.202401550. Epub 2024 Oct 25.

Abstract

Primary amines represent highly privileged chemicals for synthesis of polymers, pharmaceuticals, agrochemicals, coatings, etc. Consequently, the development of efficient and green methodologies for the production of primary amines are of great importance in chemical industry. Owing to the advantages of low cost and ease in availability, ammonia is considered as a feasible nitrogen source for synthesis of N-containing compounds. Thus, the efficient transformation of ammonia into primary amines has received much attention. In this review, the commonly applied synthetic routes to produce primary amines from ammonia were summarized, including the reductive amination of carbonyl compounds, the hydrogen transfer amination of alcohols, the hydroamination of olefins and the arylation with ammonia, in which the catalytic performance of the recent heterogeneous catalysts is discussed. Additionally, various strategies to modulate the surface properties of catalysts are outlined in conjunction with the analysis of reaction mechanism. Particularly, the amination of the biomass-derived substrates is highlighted, which could provide competitive advantages in chemical industry and stimulate the development of sustainable catalysis in the future. Ultimately, perspectives into the challenges and opportunities for synthesis of primary amines with ammonia as N-resource are discussed.

摘要

伯胺是合成聚合物、药物、农用化学品、涂料等的极具优势的化学品。因此,开发高效、绿色的伯胺生产方法在化学工业中具有重要意义。由于成本低且易于获取,氨被认为是合成含氮化合物的可行氮源。因此,氨向伯胺的高效转化受到了广泛关注。在这篇综述中,总结了从氨生产伯胺的常用合成路线,包括羰基化合物的还原胺化、醇的氢转移胺化、烯烃的氢胺化以及与氨的芳基化,其中讨论了近期多相催化剂的催化性能。此外,结合反应机理分析,概述了调节催化剂表面性质的各种策略。特别强调了生物质衍生底物的胺化,这在化学工业中可提供竞争优势,并在未来推动可持续催化的发展。最后,讨论了以氨为氮源合成伯胺面临的挑战和机遇。

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