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用于催化不对称串联反应的具有手性磷酸的高度稳定的锆(IV)基金属有机框架

Highly Stable Zr(IV)-Based Metal-Organic Frameworks with Chiral Phosphoric Acids for Catalytic Asymmetric Tandem Reactions.

作者信息

Gong Wei, Chen Xu, Jiang Hong, Chu Dandan, Cui Yong, Liu Yan

机构信息

School of Chemistry and Chemical Engineering and State Key Laboratory of Metal Matrix Composites , Shanghai Jiao Tong University , Shanghai 200240 , China.

Collaborative Innovation Center of Chemical Science and Engineering , Tianjin 300072 , China.

出版信息

J Am Chem Soc. 2019 May 8;141(18):7498-7508. doi: 10.1021/jacs.9b02294. Epub 2019 Apr 23.

Abstract

Heterogeneous Brønsted acid catalysts featuring high porosity, crystallinity, and stability have been of great interest for both fundamental studies and practical applications, but synthetically, they still face a formidable challenge. Here, we illustrated a ligand design strategy for directly installing chiral phosphoric acid catalysts into highly stable Zr-MOFs by sterically protecting them from coordinating with metal ions. A pair of chiral porous Zr(IV)-MOFs with the framework formula [ZrO(OH)(HO)(L)] were prepared from enantiopure 4,4',6,6'-tetra(benzoate) and -tetra(2-naphthoate) ligands of 1,1'-spirobiindane-7,7'-phosphoric acid. They share the same topological structure but differ in channel sizes, and both of them demonstrate excellent tolerance toward water, acid and base. Significantly enhanced Brønsted acidity was observed for the phosphoric acids that are uniformly distributed within the frameworks in comparison with the nonimmobilized acids. This not only facilitates the catalysis of asymmetric two-component tandem acetalization, Friedel-Crafts, and iso-Pictet-Spengler reactions but also promotes the catalysis of asymmetric three-component tandem deacetalization-acetalization and Friedel-Crafts reactions benefiting from the synergy with exposed Lewis acidic Zr(IV) sites. The enantioselectivities are comparable or favorable compared to those obtained from the corresponding homogeneous systems. The features of high reactivity, selectivity, stability, and recyclability for Zr(IV)-MOFs make them hold promise as a new type of heterogeneous acid catalyst for the eco-friendly synthesis of fine chemicals.

摘要

具有高孔隙率、结晶度和稳定性的多相布朗斯特酸催化剂在基础研究和实际应用中都备受关注,但在合成方面,它们仍然面临巨大挑战。在此,我们阐述了一种配体设计策略,通过空间位阻保护手性磷酸催化剂不与金属离子配位,从而将其直接安装到高度稳定的锆基金属有机框架(Zr-MOFs)中。由对映体纯的1,1'-螺二茚-7,7'-磷酸的4,4',6,6'-四(苯甲酸酯)和-四(2-萘甲酸酯)配体制备了一对骨架化学式为[ZrO(OH)(HO)(L)]的手性多孔Zr(IV)-MOF。它们具有相同的拓扑结构,但通道尺寸不同,并且二者对水、酸和碱都表现出优异的耐受性。与未固定化的酸相比,观察到均匀分布在框架内的磷酸的布朗斯特酸度显著增强。这不仅促进了不对称两组分串联缩醛化、傅克反应和异-Pictet-Spengler反应的催化,还受益于与暴露的路易斯酸性Zr(IV)位点的协同作用,促进了不对称三组分串联脱缩醛化-缩醛化和傅克反应的催化。与相应均相体系获得的对映选择性相比,这些对映选择性相当或更优。Zr(IV)-MOF的高反应性、选择性、稳定性和可回收性使其有望成为一种用于精细化学品绿色合成的新型多相酸催化剂。

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