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One-Pot Synthesis of Tetrahydropyridine Derivatives: Liquid Salt Catalyst vs Glycolic Acid Promoter. Structure and Antiradical Activity of the New Products

机译:四氢吡啶衍生物的一锅合成:液态盐催化剂与乙醇酸启动子。 新产品的结构和反自由活动

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摘要

Diethanolammonium hydrogensulfate (DHS), as a liquid salt, and glycolic acid (GA) were used for the synthesis of highly functionalized tetrahydropyridines (THPs). Due to the simplicity of the reaction procedure, excellent diastereoselectivity, and catalyst regeneration, these green protocols may be considered as an attractive approach for the preparation of THPs. Unlike numerous reported reactions for the synthesis of THPs that last for hours and with heating, GA-promoted reactions finished mostly within an hour and at room temperature. As improvement to other organocatalysed reactions for the synthesis of THPs with moderate yields, this protocol provided good to excellent yields. Application of these procedures produced three vanillic compounds reported here for the first time. Their structure was elucidated based on experimental and theoretical data (IR, ~1HNMR, ~(13)CNMR, NOESY, UV-Vis, and DFT). Experimental and theoretical antioxidant evaluation of these compounds has been carried out. DFT thermodynamical parameters supported experimental results that newly synthesized THPs deserve considerable attention as potent radical scavengers.
机译:二乙醇氨基硫酸盐(DHS)作为液盐和乙醇酸(GA)用于合成高度功能化的四氢吡啶(THP)。由于反应程序的简单性,出色的非对映选择性和催化剂再生,这些绿色方案可能被认为是制备THP的有吸引力的方法。与许多报道的对THP的合成的反应不同,该反应持续数小时并且加热,GA促成的反应主要在一个小时内和室温下完成。随着对其他​​有机反应以中等产率合成THP的反应的改善,该方案为优异的产量提供了良好的收益率。这些程序的应用首次在此报告了三种香草化合物。根据实验和理论数据(IR,〜1HHMR,〜(13)CNMR,Noesy,UV-VIS和DFT)阐明它们的结构。已经对这些化合物进行了实验和理论抗氧化评估。 DFT热力学参数支持了实验结果,新合成的THP值得大大关注作为有效的自由基清除剂。

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