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用于连续流动合成的负载型离子液体相催化剂

Supported Ionic Liquid Phase Catalysts Dedicated for Continuous Flow Synthesis.

作者信息

Latos Piotr, Wolny Anna, Chrobok Anna

机构信息

Department of Organic Chemical Technology and Petrochemistry, Faculty of Chemistry, Silesian University of Technology, 44-100 Gliwice, Poland.

出版信息

Materials (Basel). 2023 Mar 5;16(5):2106. doi: 10.3390/ma16052106.

Abstract

Heterogeneous catalysis, although known for over a century, is constantly improved and plays a key role in solving the present problems in chemical technology. Thanks to the development of modern materials engineering, solid supports for catalytic phases having a highly developed surface are available. Recently, continuous-flow synthesis started to be a key technology in the synthesis of high added value chemicals. These processes are more efficient, sustainable, safer and cheaper to operate. The most promising is the use of heterogeneous catalyst with column-type fixed-bed reactors. The advantages of the use of heterogeneous catalyst in continuous flow reactors are the physical separation of product and catalyst, as well as the reduction in inactivation and loss of the catalyst. However, the state-of-the-art use of heterogeneous catalysts in flow systems compared to homogenous ones remains still open. The lifetime of heterogeneous catalysts remains a significant hurdle to realise sustainable flow synthesis. The goal of this review article was to present a state of knowledge concerning the application of Supported Ionic Liquid Phase (SILP) catalysts dedicated for continuous flow synthesis.

摘要

多相催化尽管已有一个多世纪的历史,但仍在不断改进,并在解决当前化学技术问题中发挥着关键作用。得益于现代材料工程的发展,如今已能获得具有高度发达表面的催化相固体载体。近来,连续流合成开始成为合成高附加值化学品的关键技术。这些工艺操作起来效率更高、更可持续、更安全且成本更低。最具前景的是将多相催化剂与柱式固定床反应器结合使用。在连续流反应器中使用多相催化剂的优点包括产物与催化剂的物理分离,以及催化剂失活和损失的减少。然而,与均相催化剂相比,多相催化剂在流动体系中的当前应用状况仍有待进一步探索。多相催化剂的使用寿命仍然是实现可持续流合成的一个重大障碍。这篇综述文章的目的是介绍有关用于连续流合成的负载型离子液体相(SILP)催化剂应用的知识现状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92c0/10004067/e284269b0f50/materials-16-02106-g001.jpg

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