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Microwave Assisted Amidation of 5-Aminoisophtalic Acid Dimethyl Ester Catalyzed by Imidazolium Ionic Liquids

机译:微波辅助胺化由咪唑鎓离子液体催化的5-氨基异视酸二甲酯

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Amide functionalities present in living system as peptides and possess various biological role. Many synthetic amides also possess biological activities due to the possibility of interaction with cellular liquids such as those compounds useful as a contrast agent in radiographic method. Synthesis of amides from the carboxylic acid or derivatives normally require heating and catalyst. In this report, an environmentally benign synthesis of amide was carried out utilizing microwave radiation and catalyzed by imidazolium ionic liquids (BMIMCl). Microwave radiation provided efficient heating through activation of chemical bonds instead of conventional conductivity methods hence increasing the rate of reactions. Ionic liquids were suitable material in this synthesis due to non-volatile nature as well as stability under high temperature and microwave heating. Furthermore, ionic liquids are tunable material that can be designed for the specific synthesis and functioned as a catalyst. The optimum condition for coupling of 5-Amino-isophthalic acid dimethyl ester with an amino diol was found at 80 °C, 90 minutes, under radiation of microwave at the power of 300 Watt. The product was obtained at 38.46% yield. Furthermore, the methodology was applied to synthesis radiographic material and was successful to obtain product with 48.78% yield. The products were characterized by NMR spectroscopy.
机译:酰胺功能存在于活生生物中作为肽并具有各种生物学作用。许多合成酰胺也具有由于与细胞液体相互作用的可能性,例如在放射线方法中的造影剂中的那些化合物的相互作用的可能性。来自羧酸或衍生物的酰胺的合成通常需要加热和催化剂。在本报告中,利用微波辐射和通过咪唑鎓离子液体(Bmimcl)催化进行酰胺的环境良性合成。微波辐射通过激活化学键而不是传统的导电方法提供有效的加热,因此增加了反应速率。由于在高温和微波加热下,离子液体是该合成中的合适材料,并且在高温下稳定性和微波加热。此外,离子液体是可调谐材料,可用于特定合成并用作催化剂。在80℃,90分钟,在300瓦功率下,在80℃下,在80℃,90分钟下发现5-氨基间苯二甲酸二甲酯与氨基二醇偶联的最佳条件。获得产物的产率为38.46%。此外,该方法应用于合成放射线材料,并成功地获得48.78%收率的产物。产品的特征在于NMR光谱。

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