Lee Jonghyeon, Hong Seungpyo, Heo Yoonji, Kang Houng, Kim Min
Department of Chemistry, Chungbuk National University, Cheongju, 28644, Republic of Korea.
Department of Chemistry Education, Chungbuk National University, Cheongju, 28644, Republic of Korea.
Dalton Trans. 2021 Oct 19;50(40):14081-14090. doi: 10.1039/d1dt03143k.
It is known that 2,2,6,6-tetramethylpiperidinyl-1-oxy (or TEMPO) is a stable, radical-containing molecule, which has been utilized in various areas of organic synthesis, catalysis, polymer chemistry, electrochemical reactions, and materials chemistry. Its unique stability, attributable to its structural features, and molecular tunability allows for the modification of various materials, including the heterogenization of solid materials. Metal-organic frameworks (MOFs) and covalent organic frameworks (COFs) are porous and tunable because of their ligand or linker portion, and both have been extensively studied for use in catalytic applications. Therefore, synergistically combining the chemistry of TEMPO with the properties of MOFs and COFs is a natural choice and should allow for significant advancements, including improved recyclability and selectivity. This article focuses on TEMPO-bearing MOFs and COFs for use in catalytic applications. In addition, recent strategies related to the use of these functional porous materials in catalytic reactions are also discussed.
众所周知,2,2,6,6-四甲基哌啶-1-氧基(或TEMPO)是一种稳定的含自由基分子,已被应用于有机合成、催化、高分子化学、电化学反应和材料化学等各个领域。由于其结构特征,它具有独特的稳定性,并且分子可调性使得各种材料得以改性,包括固体材料的多相化。金属有机框架(MOF)和共价有机框架(COF)因其配体或连接部分而具有多孔性和可调性,二者都已被广泛研究用于催化应用。因此,将TEMPO的化学性质与MOF和COF的特性协同结合是一个自然的选择,应该会带来重大进展,包括提高可回收性和选择性。本文重点介绍用于催化应用的含TEMPO的MOF和COF。此外,还讨论了与这些功能性多孔材料在催化反应中的应用相关的最新策略。