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杂多酸作为一种强有力的助剂,为在无溶剂条件下合成咪唑衍生物提供了高效、清洁的新工艺。

Supported heteropoly acids offering strong option for efficient and cleaner processing for the synthesis of imidazole derivatives under solvent-free condition.

机构信息

Faculty of Chemistry, Razi University, 67149, Kermanshah, Iran.

出版信息

Mol Divers. 2011 Feb;15(1):125-34. doi: 10.1007/s11030-009-9213-1. Epub 2010 Jan 26.

Abstract

A series of 12-phosphotungstic acid (PWA) supported on various porous carriers, such as silica, alumina, titania, clay, and carbon were prepared, and their catalytic performance evaluated in the synthesis of imidazoles in solvent-free condition. It was found that PWA supported on silica (PWA/SiO(2)) showed higher activity compared to other catalysts. The observed behavior has more or less correlated with the acidic characteristic found through the potentiometrically titrated acidic sites and proton availability. The catalyst was characterized by FTIR, XRD, TGA/DSC, BET, and SEM. The presence of the Keggin structure can be followed by the above techniques, eliminating any doubt about the collapse of the supported anion. It can be observed that the process tolerates both electron donating and electron withdrawing substituents on the aldehyde with both benzil and benzoin. The general applicability of the method is demonstrated by using both benzylic and aromatic amines. The yields obtained were excellent without forming any side products such as trisubstituted imidazoles, which are normally produced in the presence of strong acids. The protocol developed using PWA/SiO(2) is superior in terms of process simplicity, reusable catalyst, high yields, short reaction time, and preclusion of toxic solvent.

摘要

一系列的 12-磷钨酸(PWA)负载在各种多孔载体上,如二氧化硅、氧化铝、二氧化钛、粘土和碳,这些催化剂在无溶剂条件下用于合成咪唑的反应中进行了评价。结果发现,负载在二氧化硅上的 12-磷钨酸(PWA/SiO(2))比其他催化剂具有更高的活性。观察到的行为或多或少与通过电位滴定酸性位和质子可用性发现的酸性特征相关。通过 FTIR、XRD、TGA/DSC、BET 和 SEM 对催化剂进行了表征。通过上述技术可以跟踪 Keggin 结构的存在,消除了对负载阴离子坍塌的任何怀疑。可以观察到该过程可以容忍醛上的供电子和吸电子取代基,无论是苯偶姻还是安息香。该方法的通用性通过使用苄基和芳基胺得到了证明。在没有形成任何副产物(如在强酸存在下通常生成的三取代咪唑)的情况下,获得了优异的产率。使用 PWA/SiO(2) 开发的方案在工艺简单性、可重复使用的催化剂、高收率、短反应时间和避免使用有毒溶剂方面具有优势。

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