New Convenient Synthesis of 8-C-Methylated Homoisoflavones and Analysis of Their Structure by NMR and Tandem Mass Spectrometry

S. Yadav
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Abstract

Homoisoflavonoids are in the subclass of the larger family of flavonoids having one more alkyl carbon than flavonoids. Among them, 8-C-Methylated homoisoflavones have not been extensively studied for synthesis and biological evaluation. Author’s current objective is to synthesize 8-C-Methylated homoisoflavones by the reaction of 3-C-methylated dihydrochalcones with N,N’-dimethyl (chloromethylene) ammonium chloride generated in situ from DMF and PCl5 for one carbon extension at about room temperature. The 3-C-methylated dihydrochalcones were synthesized by the reduction of 3-Cmethylated chalcones, which were prepared from 3-C-methylated acetophenones and aromatic aldehydes in the presence of base. All the synthesized novel homoisoflavones’s structures were characterized by NMR and Tandem Mass Spectrometry.
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新型8- c甲基化同型异黄酮的简便合成及其核磁共振和串联质谱分析
同型异黄酮是类黄酮大家族的一个亚类,比类黄酮多一个烷基碳。其中8- c甲基化同型异黄酮的合成和生物学评价尚未得到广泛的研究。作者目前的目标是通过3- c甲基化二氢查尔酮与DMF和PCl5原位生成的N,N ' -二甲基(氯甲基)氯化铵在室温下进行一碳延伸反应,合成8- c甲基化同型异黄酮。以3- c甲基化苯乙酮和芳香醛为原料,在碱的存在下,由3- c甲基化查尔酮还原合成3- c甲基化二氢查尔酮。所有合成的新型同型异黄酮的结构都通过核磁共振和串联质谱进行了表征。
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