还原胺化
催化作用
选择性
胺化
化学
基础(拓扑)
母材
沸石
组合化学
金属
有机化学
还原剂
小学(天文学)
材料科学
数学分析
数学
焊接
冶金
物理
天文
作者
Qiqi Lu,Jiangmin Sun,Xiu‐Zhi Wei,Qi Zhang,Xinghua Zhang,Lungang Chen,Jianguo Liu,Yubao Chen,Longlong Ma
标识
DOI:10.1016/j.apcata.2024.119653
摘要
Catalytic reductive amination of aldehydes is a valuable strategy to synthesize nitrogen-containing compounds but often suffers from low selectivity and complex reaction mechanisms. This study aims to develop a selective control method for the syntheses of primary amines and secondary imines, which are widely used in fine and bulk chemicals, materials, and pharmaceuticals. Metal-encapsulated zeolite is a special type of catalyst that combines the advantages of metal nanoparticles and zeolites, such as high activity and selectivity. Herein, metal-encapsulated zeolites (Pd-M@S-1, M=Ni, Mn, Co) were applied as catalysts for the reductive amination of aromatic aldehydes. Results showed that the reductive amination of aldehydes over Pd-M@S-1 catalysts can be selectively switched between primary amines over Pd0.6@S-1 and secondary imines over Pd0.6Ni@S-1 by tuning the acid-base properties of the catalysts. The effect of acid-base properties of catalysts on selectivity control was claimed by conducting control experiments, time-dependent curves, and detailed characterizations.
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