One Pot Synthesis of Thiopyrimidine Derivatives from Lignin Reproductions by Microwave-Assisted Ultrasonic Microscopy with DFT Description for Clarifying the Mass Spectrum

IF 2.6 3区 化学 Q2 CHEMISTRY, ORGANIC Polycyclic Aromatic Compounds Pub Date : 2025-02-07 DOI:10.1080/10406638.2024.2401581
Ayman M. Algohary , Youssef O. Al-Ghamdi , Manal A. Babaker , Sameh A. Rizk
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Abstract

In this work, an efficient and sustainable procedure for the one-pot synthesis of thiopyrimidine derivatives starting 1,3-diketone cut off β-O-4 lignin precursors to create anticancer agents. Microwave-ultrasonic assisted lignin extract in accessing various heterocyclic precursors such as pyrimidine, pyridine, and thiophene moieties. The results designated the ultrasonic-assisted microwave significantly accelerated synthesis with reduced time. We have diversely prolonged to tight-binding approaches to the electron ionization mass spectrometry with quantum stimulation (DFT/EIMS) to examine electron ionization mass spectra correlated to the experiment. Moreover, DFT/EIMS provides into the mechanism of the reaction of mass spectra trials. It cabins on the fragmentation method to raise the challenging bond breaking and structural rearrangements. The quantum chemical process for effective precursors of a mass spectrum is exactness required and discussed. Foremost fragmentation designs are studied and related to experimental data of the pyrimidin-thione derivatives and their glycosides.

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微波辅助超声显微镜下木质素复合体中硫代嘧啶衍生物的一锅合成及质谱分析
在这项工作中,一种高效和可持续的一锅合成硫代嘧啶衍生物的方法,从1,3-二酮开始,切断β-O-4木质素前体,以产生抗癌剂。微波超声辅助木质素萃取物获得各种杂环前体如嘧啶、吡啶和噻吩基团。结果表明,超声辅助微波能显著加快合成速度,缩短合成时间。我们已经延长到紧密结合的方法与量子刺激电子电离质谱(DFT/EIMS)来检查电子电离质谱相关的实验。此外,DFT/EIMS还提供了质谱试验反应的机理。它依赖于破碎方法,以提高具有挑战性的键断裂和结构重排。质谱的有效前体的量子化学过程是精确的要求和讨论。主要研究了嘧啶-硫酮衍生物及其苷类化合物的裂解设计,并与实验数据进行了关联。
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来源期刊
Polycyclic Aromatic Compounds
Polycyclic Aromatic Compounds 化学-有机化学
CiteScore
3.70
自引率
20.80%
发文量
412
审稿时长
3 months
期刊介绍: The purpose of Polycyclic Aromatic Compounds is to provide an international and interdisciplinary forum for all aspects of research related to polycyclic aromatic compounds (PAC). Topics range from fundamental research in chemistry (including synthetic and theoretical chemistry) and physics (including astrophysics), as well as thermodynamics, spectroscopy, analytical methods, and biology to applied studies in environmental science, biochemistry, toxicology, and industry. Polycyclic Aromatic Compounds has an outstanding Editorial Board and offers a rapid and efficient peer review process, as well as a flexible open access policy.
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