绿色化金属-有机框架合成过程及其在可持续催化中的应用。

Greening the Processes of Metal-Organic Framework Synthesis and their Use in Sustainable Catalysis.

机构信息

State Key Laboratory of Pulp and Paper Engineering, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510640, China.

出版信息

ChemSusChem. 2017 Aug 24;10(16):3165-3187. doi: 10.1002/cssc.201700748. Epub 2017 Jul 26.

Abstract

Given the shortage of sustainable resources and the increasingly serious environmental issues in recent decades, the demand for clean technologies and sustainable feedstocks is of great interest to researchers worldwide. With regard to the fields of energy saving and environmental remediation, the key point is the development of efficient catalysts, not only in terms of facile synthesis methods, but also the benign utilization of such catalysts. This work reviews the use of metal-organic frameworks (MOFs) and MOF-based materials in these fields. The definition of MOFs and MOF-based materials will be primarily introduced followed by a brief description of the characterization and stability of MOF-related materials under the applied conditions. The greening of MOF synthesis processes will then be discussed and catalogued by benign solvents and conditions and green precursors of MOFs. Furthermore, their suitable application in sustainable catalysis will be summarized, focusing on several typical atom-economic reactions, such as the direct introduction of H or O and C-C bond formation. Approaches towards reducing CO emission by MOF-based catalysts will be described with special emphasis on CO fixation and CO reduction. In addition, driven by the explosive growth of energy consumption in the last century, much research has gone into biomass, which represents a renewable alternative to fossil fuels and a sustainable carbon feedstock for chemical production. The advanced progress of biomass-related transformations is also illustrated herein. Fundamental insights into the nature of MOF-based materials as constitutionally easily recoverable heterogeneous catalysts and as supports for various active sites is thoroughly discussed. Finally, challenges facing the development of this field and the outlook for future research are presented.

摘要

鉴于近几十年来可持续资源的短缺和日益严重的环境问题,清洁技术和可持续原料的需求引起了全球研究人员的极大关注。在节能和环境修复领域,关键是开发高效催化剂,不仅要考虑简便的合成方法,还要考虑此类催化剂的良性利用。这项工作综述了金属有机骨架(MOF)和基于 MOF 的材料在这些领域的应用。首先将介绍 MOF 和基于 MOF 的材料的定义,然后简要描述 MOF 相关材料在应用条件下的特性和稳定性。然后将通过良性溶剂和条件以及 MOF 的绿色前体来讨论和分类 MOF 合成过程的绿色化。此外,还将总结它们在可持续催化中的适宜应用,重点介绍几种典型的原子经济性反应,如直接引入 H 或 O 和 C-C 键形成。将描述基于 MOF 的催化剂减少 CO 排放的方法,特别强调 CO 固定和 CO 还原。此外,由于上个世纪能源消耗的爆炸式增长,人们对生物质进行了大量研究,生物质是化石燃料的可再生替代品,也是化学生产中可持续的碳原料。本文还说明了生物质相关转化的先进进展。彻底讨论了 MOF 基材料作为结构上容易回收的多相催化剂和各种活性位的载体的性质。最后,提出了该领域发展所面临的挑战和未来研究的展望。

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