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可逆的狄尔斯-阿尔德反应和迈克尔加成反应实现了金属有机框架的便捷后合成修饰。

Reversible Diels-Alder and Michael Addition Reactions Enable the Facile Postsynthetic Modification of Metal-Organic Frameworks.

作者信息

Nayab Sana, Trouillet Vanessa, Gliemann Hartmut, Weidler Peter G, Azeem Iqra, Tariq Saadia R, Goldmann Anja S, Barner-Kowollik Christopher, Yameen Basit

机构信息

Department of Chemistry & Chemical Engineering, Syed Babar Ali School of Science and Engineering, Lahore University of Management Sciences (LUMS), Lahore, Punjab 54792, Pakistan.

Department of Chemistry, Lahore College for Women University, Jail Road, Lahore, Punjab 54000, Pakistan.

出版信息

Inorg Chem. 2021 Apr 5;60(7):4397-4409. doi: 10.1021/acs.inorgchem.0c02492. Epub 2021 Mar 17.

Abstract

Functionalization of metal-organic frameworks (MOFs) is critical in exploring their structural and chemical diversity for numerous potential applications. Herein, we report multiple approaches for the tandem postsynthetic modification (PSM) of various MOFs derived from Zr(IV), Al(III), and Zn(II). Our current work is based on our efforts to develop a wide range of MOF platforms with a dynamic functional nature that can be chemically switched via thermally triggered reversible Diels-Alder (DA) and hetero-Diels-Alder (HDA) ligations. Furan-tagged MOFs (furan-UiO-66-Zr) were conjugated with maleimide groups bearing dienophiles to prepare MOFs with a chemically switchable nature. As HDA pairs, phosphoryl dithioester-based moieties and cyclopentadiene (Cp)-grafted MOF (Cp-MIL-53-Al) were utilized to demonstrate the cleavage and rebonding of the linkages as a function of temperature. In addition to these strategies, the Michael addition reaction was also applied for the tandem PSM of IRMOF-3-Zn. Maleimide groups were postsynthetically introduced in the MOF lattice, which were further ligated with cysteine-based biomolecules via the thiol-maleimide Michael addition reaction. On the basis of the versatility of the herein presented chemistry, we expect that these approaches will help in designing a variety of sophisticated functional MOF materials addressing diverse applications.

摘要

金属有机框架材料(MOFs)的功能化对于探索其结构和化学多样性以实现众多潜在应用至关重要。在此,我们报告了多种对源自Zr(IV)、Al(III)和Zn(II)的各种MOFs进行串联后合成修饰(PSM)的方法。我们目前的工作基于我们开发一系列具有动态功能性质的MOF平台的努力,这些平台可以通过热触发的可逆狄尔斯-阿尔德(DA)和杂狄尔斯-阿尔德(HDA)连接进行化学切换。呋喃标记的MOFs(呋喃-UiO-66-Zr)与带有亲双烯体的马来酰亚胺基团共轭,以制备具有化学可切换性质的MOFs。作为HDA对,基于磷酰二硫酯的部分和环戊二烯(Cp)接枝的MOF(Cp-MIL-53-Al)被用于证明连接的断裂和重新结合随温度的变化。除了这些策略,迈克尔加成反应也被应用于IRMOF-3-Zn的串联PSM。马来酰亚胺基团在后合成过程中被引入到MOF晶格中,通过硫醇-马来酰亚胺迈克尔加成反应进一步与基于半胱氨酸的生物分子连接。基于本文所展示化学的多功能性,我们期望这些方法将有助于设计各种复杂的功能性MOF材料以满足不同的应用。

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