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Novel Ionic Liquid-Functionalized Chitosan DSIMAlCl3x–@CS: SynthesisCharacterization and Catalytic Application for Preparation of Substituted Pyrazine Derivatives

机译:新型离子液体功能化壳聚糖DSIM AlCl3 x– @ CS:合成取代吡嗪衍生物的表征及催化应用

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摘要

Pyrazines are renowned heterocyclic compounds that have played an important role in drug design and are part of many polycyclic compounds of biological and industrial significance. In this article, a novel chitosan-immobilized ionic liquid, [DSIM][AlCl3]x@CS, has been synthesized easily at ambient temperature and used for catalyzing the synthesis of a series of biologically relevant pyrazine derivatives. The catalyst is well characterized by various techniques such as Fourier transform infrared spectroscopy, Raman spectroscopy, solid-state 13C MAS nuclear magnetic resonance, scanning electron microscopy/energy-dispersive X-ray, elemental mapping, transmission electron microscopy, powder X-ray diffraction, and thermal gravimetric analyses. The advantageous features of the present energy-sustainable methodology include high yield of product (>99%), shorter reaction time periods, and recyclability of the catalyst.
机译:吡嗪是著名的杂环化合物,在药物设计中发挥了重要作用,并且是许多具有生物学和工业意义的多环化合物的一部分。本文中,一种新型的壳聚糖固定化离子液体[DSIM] [AlCl3] x @CS易于在环境温度下合成,并用于催化一系列生物相关的吡嗪的合成衍生品。该催化剂具有多种技术,如傅立叶变换红外光谱,拉曼光谱,固态 13 MAS核磁共振,扫描电子显微镜/能量色散X射线,元素图谱,透射等电子显微镜,粉末X射线衍射和热重分析。本能量可持续方法的有利特征包括产物的高产率(> 99%),较短的反应时间周期和催化剂的可回收性。

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