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含胺衍生物的聚合物网络作为连续驱动微流控反应器中Knoevenagel反应的有机催化剂

Polymeric Networks Containing Amine Derivatives as Organocatalysts for Knoevenagel Reaction within Continuously Driven Microfluidic Reactors.

作者信息

Killi Naresh, Bartenbach Julian, Kuckling Dirk

机构信息

Department of Chemistry, Faculty of Science, Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany.

出版信息

Gels. 2023 Feb 21;9(3):171. doi: 10.3390/gels9030171.

Abstract

The Knoevenagel reaction is a classic reaction in organic chemistry for the formation of C-C bonds. In this study, various catalytic monomers for Knoevenagel reactions were synthesized and polymerized via photolithography to form polymeric gel dots with a composition of 90% catalyst, 9% gelling agent and 1% crosslinker. Furthermore, these gel dots were inserted into a microfluidic reactor (MFR) and the conversion of the reaction using gel dots as catalysts in the MFR for 8 h at room temperature was studied. The gel dots containing primary amines showed a better conversion of about 83-90% with aliphatic aldehyde and 86-100% with aromatic aldehyde, compared to the tertiary amines (52-59% with aliphatic aldehyde and 77-93% with aromatic aldehydes) which resembles the reactivity of the amines. Moreover, the addition of polar solvent (water) in the reaction mixture and the swelling properties of the gel dots by altering the polymer backbone showed a significant enhancement in the conversion of the reaction, due to the increased accessibility of the catalytic sites in the polymeric network. These results suggested the primary-amine-based catalysts facilitate better conversion compared to tertiary amines and the reaction solvent had a significant influence on organocatalysis to improve the efficiency of MFR.

摘要

克诺文纳格尔反应是有机化学中用于形成碳 - 碳键的经典反应。在本研究中,合成了用于克诺文纳格尔反应的各种催化单体,并通过光刻法进行聚合,以形成由90%催化剂、9%胶凝剂和1%交联剂组成的聚合物凝胶点。此外,将这些凝胶点插入微流控反应器(MFR)中,并研究了在室温下使用凝胶点作为催化剂在MFR中进行8小时反应的转化率。与叔胺(脂肪醛转化率为52 - 59%,芳香醛转化率为77 - 93%)相比,含有伯胺的凝胶点与脂肪醛反应时转化率约为83 - 90%,与芳香醛反应时转化率为86 - 100%,这与胺的反应活性相似。此外,在反应混合物中添加极性溶剂(水)以及通过改变聚合物主链使凝胶点具有溶胀特性,由于聚合物网络中催化位点的可及性增加,反应转化率显著提高。这些结果表明,与叔胺相比,基于伯胺的催化剂促进了更好的转化率,并且反应溶剂对有机催化有显著影响,从而提高了MFR的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38a9/10048661/d8a3161e065c/gels-09-00171-g001.jpg

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