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基于木质素的 C-C 键形成反应催化剂。

Lignin-Based Catalysts for C-C Bond-Forming Reactions.

机构信息

Instituto de Bio-Orgánica Antonio González, Universidad de La Laguna, Avda. Astrofísico Francisco Sánchez 2, 38206 La Laguna, Spain.

Departamento de Química Orgánica, Universidad de La Laguna, Avda. Astrofísico Francisco Sánchez 3, 38206 La Laguna, Spain.

出版信息

Molecules. 2023 Apr 16;28(8):3513. doi: 10.3390/molecules28083513.

Abstract

Carbon-carbon (C-C) bond formation is the key reaction in organic synthesis to construct the carbon framework of organic molecules. The continuous shift of science and technology toward eco-friendly and sustainable resources and processes has stimulated the development of catalytic processes for C-C bond formation based on the use of renewable resources. In this context, and among other biopolymer-based materials, lignin has attracted scientific attention in the field of catalysis during the last decade, either through its acid form or as a support for metal ions and metal nanoparticles that drive the catalytic activity. Its heterogeneous nature, as well as its facile preparation and low cost, provide competitive advantages over other homogeneous catalysts. In this review, we have summarized a variety of C-C formation reactions, such as condensations, Michael additions of indoles, and Pd-mediated cross-coupling reactions that were successfully carried out in the presence of lignin-based catalysts. These examples also involve the successful recovery and reuse of the catalyst after the reaction.

摘要

碳-碳(C-C)键的形成是有机合成中构建有机分子碳骨架的关键反应。科学技术不断向环保和可持续资源与工艺转移,这刺激了基于可再生资源的 C-C 键形成催化工艺的发展。在这种情况下,除了其他基于生物聚合物的材料外,木质素在过去十年中也因其酸形式或作为驱动催化活性的金属离子和金属纳米粒子的载体而在催化领域引起了科学界的关注。其多相性质以及易于制备和低成本为其提供了相对于其他均相催化剂的竞争优势。在这篇综述中,我们总结了各种 C-C 形成反应,例如缩合反应、吲哚的迈克尔加成反应以及 Pd 介导的交叉偶联反应,这些反应都在木质素基催化剂的存在下成功进行。这些例子还涉及到反应后催化剂的成功回收和再利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d08/10141373/1c25dcc7f613/molecules-28-03513-g001.jpg

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