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金属有机框架材料用于多相碱性催化。

Metal-Organic Frameworks for Heterogeneous Basic Catalysis.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), College of Chemistry and Chemical Engineering, Nanjing Tech University , Nanjing 210009, China.

Department of Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China , Hefei, Anhui 230026, China.

出版信息

Chem Rev. 2017 Jun 28;117(12):8129-8176. doi: 10.1021/acs.chemrev.7b00091. Epub 2017 May 25.

Abstract

Great attention has been given to metal-organic frameworks (MOFs)-derived solid bases because of their attractive structure and catalytic performance in various organic reactions. The extraordinary skeleton structure of MOFs provides many possibilities for incorporation of diverse basic functionalities, which is unachievable for conventional solid bases. The past decade has witnessed remarkable advances in this vibrant research area; however, MOFs for heterogeneous basic catalysis have never been reviewed until now. Therefore, a review summarizing MOFs-derived base catalysts is highly expected. In this review, we present an overview of the recent progress in MOFs-derived solid bases covering preparation, characterization, and catalytic applications. In the preparation section, the solid bases are divided into two categories, namely, MOFs with intrinsic basicity and MOFs with modified basicity. The basicity can originate from either metal sites or organic ligands. Different approaches used for generation of basic sites are included, and each approach is described with representative examples. The fundamental principles for the design and fabrication of MOFs with basic functionalities are featured. In the characterization section, experimental techniques and theoretical calculations employed for characterization of basic MOFs are summarized. Some representive experimental techniques, such as temperature-programmed desorption of CO (CO-TPD) and infrared (IR) spectra of different probing molecules, are covered. Following preparation and characterization, the catalytic applications of MOFs-derived solid bases are dealt with. These solid bases have potential to catalyze some well-known "base-catalyzed reactions" like Knoevenagel condensation, aldol condensation, and Michael addition. Meanwhile, in contrast to conventional solid bases, MOFs show some different catalytic properties due to their special structural and surface properties. Remarkably, characteristic features of MOFs-derived solid bases are described by comparing with conventional inorganic counterparts, keeping in mind the current opportunities and challenges in this field.

摘要

人们高度关注金属-有机骨架(MOFs)衍生的固体碱,因为它们在各种有机反应中具有吸引人的结构和催化性能。MOFs 的非凡骨架结构为引入各种不同的碱性官能团提供了许多可能性,这是传统固体碱无法实现的。在过去的十年中,这个充满活力的研究领域取得了显著的进展;然而,直到现在,用于多相碱性催化的 MOFs 还从未被综述过。因此,非常期待有一篇综述总结 MOFs 衍生的碱性催化剂。在这篇综述中,我们介绍了 MOFs 衍生的固体碱的最新进展,涵盖了制备、表征和催化应用。在制备部分,将固体碱分为两类,即具有本征碱性的 MOFs 和具有改性碱性的 MOFs。碱性可以源自金属位或有机配体。包括生成碱性位的不同方法,并用代表性实例描述了每种方法。还介绍了具有碱性官能团的 MOFs 的设计和制造的基本原则。在表征部分,总结了用于表征碱性 MOFs 的实验技术和理论计算。涵盖了一些代表性的实验技术,如 CO 程序升温脱附(CO-TPD)和不同探针分子的红外(IR)光谱。在制备和表征之后,讨论了 MOFs 衍生的固体碱的催化应用。这些固体碱有可能催化一些著名的“碱催化反应”,如 Knoevenagel 缩合、Aldol 缩合和 Michael 加成。同时,与传统的固体碱相比,由于其特殊的结构和表面性质,MOFs 表现出一些不同的催化性质。值得注意的是,通过与传统的无机对应物进行比较,描述了 MOFs 衍生的固体碱的特征,同时考虑到该领域当前的机遇和挑战。

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