化学
催化作用
金属有机骨架
锆
碳酸二甲酯
酯交换
锌
多相催化
晶体工程
无机化学
选择性
晶体结构
咪唑酯
化学工程
吸附
有机化学
超分子化学
工程类
作者
Ye Xue,Chenxi Bai,Peipei Zhang,Fuyuan Han,Junyu Xia,Xinhua Gao,Wenlin Xu,Lisheng Guo,Jie Li
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2024-05-17
卷期号:63 (22): 10346-10357
被引量:2
标识
DOI:10.1021/acs.inorgchem.4c01253
摘要
Metallic atoms within metal–organic framework (MOF) materials exhibit a distinctive and adaptable coordination structure. The three-dimensional (3D) pore configuration of MOFs enables the complete exposure of metal active sites, rendering them prevalent in various catalytic reactions. In this study, zinc (Zn) atoms within Zn-based MOF materials, characterized by an abundance of valence electrons, are utilized for the transesterification of dimethyl carbonate (DMC). Additionally, the introduction of zirconium (Zr) effectively addresses the susceptibility of the MOFs' crystal structure to dissolution in organic solvents. The formulated catalyst, Zn-10%Zr-MOF(300), demonstrates remarkable catalytic performance with 91.5% DMC selectivity, 61.9% propylene carbonate (PC) conversion, and 56.6% DMC yield. Impressively, the catalyst maintains its high performance over five cycles. Results indicate that Zr interacts with Zn, forming new coordination bonds and enhancing the catalyst crystal structure stability. Moreover, electron transfer intensifies the alkalinity of the active Zn atoms, enhancing the overall catalyst performance. This research informs the development of transesterification heterogeneous catalysts and broadens the application scope of MOF catalysts.
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