化学
氨解
流动化学
微型反应器
组合化学
胺气处理
分子内力
胺化
还原胺化
连续流动
有机合成
亲核细胞
有机化学
催化作用
生化工程
工程类
作者
Alessandra Sivo,Vincenzo Ruta,Gianvito Vilé
标识
DOI:10.1021/acs.joc.1c01487
摘要
Azetidinium salts are important motifs in organic synthesis but are difficult to obtain due to extremely long synthetic protocols. Herein, a rapid continuous-flow process for the on-demand synthesis of azetidinium salts is described. In particular, the nucleophilic addition of secondary amines and the subsequent intramolecular N-cyclization have been investigated in batch and continuous-flow modes, exploring the effects of solvent type, temperature, reaction time, and amine substituent on the synthesis of azetidinium salts. This has enabled us to quickly identify optimal reaction conditions and obtain microkinetic parameters, verifying that the use of a flow reactor leads to a reduction of the activation energy for the epichlorohydrin aminolysis due to the better control of mass and heat transfer during reaction. This confirms the key role of continuous-flow technologies to affect the kinetics of a reaction and make synthetic protocols ultrarapid and more efficient.
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