路易斯酸
催化作用
化学
金属有机骨架
配体(生物化学)
有机碱
产量(工程)
环加成
炔丙基
组合化学
基础(拓扑)
金属
药物化学
有机化学
吸附
材料科学
受体
数学分析
生物化学
冶金
数学
作者
Xuerui Tian,Xiaoyu Jiang,Shuhua Hou,Jie Han,Bin Zhao,Zhuo-Hao Jiao
标识
DOI:10.1002/ange.202200123
摘要
Abstract Regulating Lewis acid–base sites in catalysts to investigate their influence in the chemical fixation of CO 2 is significant but challenging. A metal–organic framework (MOF) with open metal Co sites, {(NH 2 Me 2 )[Co 3 ( μ 3 ‐OH)(BTB) 2 (H 2 O)]⋅9 H 2 O⋅5 DMF} n ( 1 ), was obtained and the results of the catalytic investigation show that 1 can catalyze cycloaddition of CO 2 and aziridines to give 99 % yield. The efficiency of the cyclization of CO 2 with propargyl amines is only 32 %. To improve the catalytic ability of 1 , ligand XN with Lewis base sites was introduced into 1 and coordinated with the open Co sites, resulting in a decrease of the Lewis acid sites and an increase in the Lewis base sites in a related MOF 2 ({(NH 2 Me 2 )[Co 3 ( μ 3 ‐OH)(NHMe 2 )(BTB) 2 (XN)]⋅8 H 2 O⋅4 DMF} n ). Selective regulation of the type of active centers causes the yield of oxazolidinones to be enhanced by about 2.4 times, suggesting that this strategy can turn on/off the catalytic activity for different reactions. The catalytic results from 2 treated with acid solution support this conclusion. This work illuminates a MOF‐construction strategy that produces efficient catalysts for CO 2 conversion.
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