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吗啉和4-甲基吗啉对氨基甲酸乙酯形成的影响:一项计算研究。

Effect of morpholine, and 4-methylmorpholine on urethane formation: a computational study.

作者信息

Waleed Hadeer Q, Hadjadj Rachid, Viskolcz Béla, Fiser Béla

机构信息

Institute of Chemistry, University of Miskolc, Miskolc-Egyetemváros, 3515, Hungary.

Higher Education and Industrial Cooperation Centre, University of Miskolc, Miskolc-Egyetemváros, 3515, Hungary.

出版信息

Sci Rep. 2023 Oct 20;13(1):17950. doi: 10.1038/s41598-023-44492-x.

Abstract

A theoretical study of urethane formation through the reaction of phenyl isocyanate and butan-1-ol was carried out, without and in the presence of morpholine, and 4-methylmorpholine catalysts. The reaction with and without catalysts was studied at BHandHLYP/6-31G(d) and G3MP2BHandHLYP levels of theories. The reaction mechanism in the presence of catalysts differs significantly from the catalyst-free case and includes seven steps. The catalyst-free system was investigated along with the catalytic process, the geometries were optimized, and the corresponding thermodynamic properties were calculated. Calculated reactant complexes were compared with crystal structures of morpholine, and 4-methylmorpholine complexed with diols found in the literature. The structures were strikingly similar and thus, the validity of the proposed and studied general organocatalytic reaction mechanism was partially verified. Meanwhile, an irregularity in the energy profile occurred due to the zwitterionic nature of an intermediate. To handle the irregularity, a correction was implemented which handles the appearance of a zwitterionic structure and the corresponding energetic properties. The results showed that morpholine is less effective catalyst compared to 4-methylmorpholine, which can be associated with the difference in their PA (1523.95 and 963.07 kJ/mol, respectively). The current results prove the important role of amine catalysts in urethane synthesis which can be applied in polyurethane catalyst design and development.

摘要

开展了一项关于异氰酸苯酯与丁醇-1反应生成聚氨酯的理论研究,该反应分别在不存在和存在吗啉及4-甲基吗啉催化剂的情况下进行。在BHandHLYP/6-31G(d)和G3MP2BHandHLYP理论水平下研究了有无催化剂时的反应。有催化剂存在时的反应机理与无催化剂的情况有显著不同,且包含七个步骤。对无催化剂体系以及催化过程进行了研究,优化了几何结构,并计算了相应的热力学性质。将计算得到的反应物配合物与文献中发现的吗啉以及与二醇络合的4-甲基吗啉的晶体结构进行了比较。这些结构惊人地相似,因此,所提出和研究的一般有机催化反应机理的有效性得到了部分验证。同时,由于中间体的两性离子性质,能量分布出现了不规则情况。为处理该不规则情况,实施了一种校正方法,该方法处理两性离子结构的出现及其相应的能量性质。结果表明,与4-甲基吗啉相比,吗啉是效果较差的催化剂,这可能与它们的质子亲合能(分别为1523.95和963.07 kJ/mol)差异有关。当前结果证明了胺催化剂在聚氨酯合成中的重要作用,这可应用于聚氨酯催化剂的设计与开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bf8/10589236/e2de94f86776/41598_2023_44492_Fig1_HTML.jpg

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