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Metal-organic frameworks (MOFs) bring new life to hydrogen-bonding organocatalysts in confined spaces

机译:金属有机框架(MOF)为密闭空间中的氢键键合有机催化剂带来新的活力

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摘要

Hydrogen-bonding organocatalysis has emerged as a promising biomimetic alternative to Lewis acid catalysis. Urea, thiourea and squaramide moieties represent the most common hydrogen-bond donors used for the preparation of these catalysts. However, their significant tendency to undergo self-quenching (self-aggregation) often decreases their solubility and reactivity. Recently, scientists have found a promising way around this problem by immobilizing the hydrogen-bonding organocatalysts on metal-organic frameworks (MOFs). Along with advantageous modular synthesis and recycling properties, the tunable porosity and topology of MOFs also allows fast mass transport and/or interactions with substrates. Herein, we highlight the existing examples dealing with the fabrication and testing of hydrogen-bonding organocatalyst-containing MOFs, providing also our vision for further advances in this area. The results derived from these studies will likely serve as inspiration for the future development of superior hydrogen-bonding organocatalysts to accomplish in confined spaces chemical transformations that are either slow or unaffordable under standard homogeneous conditions.
机译:氢键键合有机催化已成为路易斯酸催化的一种有前途的仿生替代品。尿素,硫脲和方酸酰胺部分是用于制备这些催化剂的最常见的氢键供体。但是,它们发生自我猝灭(自我聚集)的显着趋势通常会降低其溶解度和反应活性。最近,科学家通过将氢键有机催化剂固定在金属有机骨架(MOF)上,找到了解决该问题的有前途的方法。除具有有利的模块化合成和再循环特性外,MOF的可调孔隙率和拓扑结构还允许快速的质量传输和/或与基材的相互作用。在本文中,我们重点介绍了现有示例,这些示例涉及含氢键合有机催化剂的MOF的制备和测试,也为我们在该领域的进一步发展提供了愿景。从这些研究中得出的结果可能会为高级氢键有机催化剂的未来发展提供启发,以在受限的空间内完成在标准均相条件下缓慢或难以承受的化学转化。

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