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由两种不同有机配体组成的Zn-URJC-12材料用于将CO转化为环状碳酸酯

Zn-URJC-12 Material Constituted of Two Different Organic Ligands for CO Valorization into Cyclic Carbonates.

作者信息

Tapiador Jesús, Leo Pedro, Salcedo-Abraira Pablo, Rodríguez-Diéguez Antonio, Orcajo Gisela

机构信息

Chemical and Environmental Engineering Group, Escuela Superior de Ciencias Experimentales y Tecnología (ESCET), Universidad Rey Juan Carlos, c/Tulipán s/n, 28933 Móstoles, Spain.

Department of Inorganic Chemistry, University of Granada, Avda. Fuentenueva s/n, 18071 Granada, Spain.

出版信息

Nanomaterials (Basel). 2025 Jul 1;15(13):1018. doi: 10.3390/nano15131018.

Abstract

A novel metal-organic framework based on zinc ions, designated as Zn-URJC-12, has been synthesized and applied for the first time in the cycloaddition reaction between carbon dioxide and epoxides. This MOF is constructed from two different organic linkers: 5-aminoisophthalic acid and 4,4'-biphenyldicarboxylic acid. The framework features -NH functional groups coordinated to Zn(II) centers, as confirmed by single-crystal X-ray diffraction analysis. Zn-URJC-12 demonstrates exceptional chemical stability in polar organic solvents, such as methanol, while maintaining thermal stability up to 250 °C. The material exhibits high catalytic efficiency in the cycloaddition of CO with epoxides, achieving yields of 100% and 76% for propylene oxide and allyl glycidyl ether, respectively. Additionally, Zn-URJC-12 maintains its structural integrity and catalytic performance during five successive reaction cycles. These findings underscore Zn-URJC-12 as a promising heterogeneous catalyst for the valorization of CO into cyclic carbonates.

摘要

一种基于锌离子的新型金属有机框架材料,命名为Zn-URJC-12,已被合成并首次应用于二氧化碳与环氧化物之间的环加成反应。这种金属有机框架由两种不同的有机连接体构建而成:5-氨基间苯二甲酸和4,4'-联苯二甲酸。通过单晶X射线衍射分析证实,该框架具有与Zn(II)中心配位的-NH官能团。Zn-URJC-12在极性有机溶剂(如甲醇)中表现出优异的化学稳定性,同时在高达250°C的温度下保持热稳定性。该材料在CO与环氧化物的环加成反应中表现出高催化效率,环氧丙烷和烯丙基缩水甘油醚的产率分别达到100%和76%。此外,Zn-URJC-12在连续五个反应循环中保持其结构完整性和催化性能。这些发现突出了Zn-URJC-12作为一种将CO转化为环状碳酸酯的有前景的多相催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af2b/12250655/855b04bd0245/nanomaterials-15-01018-g001.jpg

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