通过C-N键形成反应合成杂环化合物的微波诱导绿色化学方法

IF 0.9 Q4 CHEMISTRY, MULTIDISCIPLINARY
B. Banik, B. Sahoo, B. R. Kumar, Krishna Chandra Panda
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引用次数: 3

摘要

通过碳-氮(C-N)键形成反应合成杂环化合物被认为是合成化学领域中出现的一种有效的方案。C-N键形成反应可以通过缩合、偶联、开环、环化或闭环等过程进行。这些反应的反应模式主要取决于反应条件以及与合成含C-N体系的杂环化合物(包括吡唑、咪唑、,吡啶、嘧啶、噻唑、四唑、异恶唑、苯并噻嗪和苯并咪唑等。此外,微波诱导合成技术成为可持续生产结构多样的有机化合物的替代策略。该方法提供了更清洁的反应、更快的反应速率、原子经济性和节能性。因此,微波辐射在有机合成中的应用成为资源友好和环保的过程。它遵循绿色化学方法,使用更安全的溶剂、可再生原料和绿色催化剂。这种方法的独特之处在于产生各种类型的生物活性剂或药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave Induced Green chemistry approach towards synthesis of heterocyclic compounds via C-N Bond Forming Reactions
The synthesis of heterocyclic compounds via carbon-nitrogen (C-N) bond formation reaction is considered as an emerged and efficient protocol in the field of synthetic chemistry. The C–N bond-forming reactions can proceed through condensation, coupling, ring-opening, cyclization or ring closure process etc. The reactivity pattern of these reactions mainly depends upon the reaction conditions as well as the type of catalysts and reacting substances that are associated with the synthesis of heterocyclic compounds containing the C-N system including pyrazole, imidazole, pyridine, pyrimidine, thiazole, tetrazole, isoxazole, benzothiazine and benzimidazole etc. Further, the technique of microwave-induced synthesis becomes an alternative strategy for the sustainable production of structurally diverse organic compounds. This method provides a cleaner reaction, faster reaction rate, atom economy and energy-efficient. So, the utilization of microwave radiation in organic synthesis becomes resource-friendly and eco-friendly processes. It follows the green chemistry approach by using safer solvents, renewable starting materials and green catalysts. The unique feature of this method is to generate various types of bioactive or medicinal agents.
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来源期刊
Current Microwave Chemistry
Current Microwave Chemistry CHEMISTRY, MULTIDISCIPLINARY-
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