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金属有机骨架作为合成含氮杂环的固体催化剂。

Metal-organic frameworks as solid catalysts for the synthesis of nitrogen-containing heterocycles.

机构信息

Centre for Green Chemistry Processes, School of Chemistry, Madurai Kamaraj University, Madurai, Tamil Nadu, India.

出版信息

Chem Soc Rev. 2014 Aug 21;43(16):5750-65. doi: 10.1039/c3cs60442j.

Abstract

Metal-organic frameworks (MOFs) are finding increasing application as solid catalysts for liquid phase reactions leading to the synthesis of fine chemicals. In the present review we have focused on those reports describing the use of MOFs as catalysts for the synthesis of N-containing heterocycles that is a class of organic compounds with high added value due to their therapeutic use as drugs and their remarkable biological activities. After an introduction describing relevant structural features of MOFs and the nature of their active sites, this manuscript is organized according to the type of N-containing heterocycle synthesized employing MOFs as catalysts including pyrimidines, N-substituted piperidines, quinolines, indoles, N-substituted imidazoles, triazoles and heterocyclic amides. Special attention has been paid to the structural stability of MOFs under the reaction conditions, to the occurrence of metal leaching and reusability. The final section of this review provides some concluding remarks and future prospects for the field, with emphasis on showing the superiority of MOFs with respect to other solid catalysts for this type of liquid phase organic reactions and pointing out that the final goal in this research would be the use of these materials as catalysts in real industrial synthesis.

摘要

金属-有机骨架(MOFs)作为用于液相反应的固体催化剂的应用越来越广泛,这些反应可用于精细化学品的合成。在本综述中,我们重点关注那些描述 MOFs 作为催化剂用于合成含氮杂环的报道,因为这些含氮杂环类化合物具有很高的附加值,它们可以作为药物用于治疗,并且具有显著的生物活性。在介绍了 MOFs 的相关结构特征和活性位点的性质之后,本文根据所使用的 MOFs 催化剂合成的含氮杂环的类型进行了组织,包括嘧啶、N-取代的哌啶、喹啉、吲哚、N-取代的咪唑、三唑和杂环酰胺。特别关注了 MOFs 在反应条件下的结构稳定性、金属浸出和可重复使用性的问题。这篇综述的最后一部分提供了一些结论和该领域的未来展望,重点在于展示了 MOFs 相对于其他用于此类液相有机反应的固体催化剂的优越性,并指出该研究的最终目标是将这些材料用作实际工业合成中的催化剂。

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