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新型5-氯水杨醛Schiff碱还原胺的合成及其抗菌活性研究 被引量:1
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作者 李皓琳 《中南药学》 CAS 2019年第1期56-59,共4页
目的设计合成5-氯水杨醛Schiff碱还原胺并研究其抗菌活性。方法以具有很好的药物活性的5-氯水杨醛为原料,设计并合成一系列新型5-氯水杨醛的Schiff碱还原胺衍生物,通过晶体结构、1H-NMR、MS及元素分析对所合成的目标化合物进行结构表征... 目的设计合成5-氯水杨醛Schiff碱还原胺并研究其抗菌活性。方法以具有很好的药物活性的5-氯水杨醛为原料,设计并合成一系列新型5-氯水杨醛的Schiff碱还原胺衍生物,通过晶体结构、1H-NMR、MS及元素分析对所合成的目标化合物进行结构表征,并对其生物活性进行了初步筛选。结果初步生物活性测试结果表明,大部分化合物表现出一定的抗菌活性,其中化合物3b和3g具有较强的抗菌活性。结论以5-氯水杨醛Schiff碱还原胺为先导化合物研发新型抗菌药物具有很好的应用前景。 展开更多
关键词 5-氯水杨醛 还原胺衍生物 抗菌活性
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A facile synthesis of 2-aryloxypyrimidine derivatives via a tandem reductive amination/intermolecular S_NAr sequence 被引量:4
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作者 Hai-feng WU Pei-zhi ZHANG Jun WU 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2010年第2期94-101,共8页
A novel tandem reductive amination/intermolecular nucleophilic aromatic substitution (SNAr) sequence has been established for the synthesis of amine containing pyrimidine in formation of one carbon-oxygen and one carb... A novel tandem reductive amination/intermolecular nucleophilic aromatic substitution (SNAr) sequence has been established for the synthesis of amine containing pyrimidine in formation of one carbon-oxygen and one carbon-nitrogen bonds in a one-pot fashion. Treatment of aldehyde with arylamine, 2-methanesulfonyl-4,6-dimeth-oxypyrimidine and sodium borohydride provides good overall yield. The p-toluenesulfonic acid (PTSA) can be used as activator and is generally needed in the reaction. Dioxane is the preferred reaction solvent, but reactions can also be carried out in tetrahydrofuran (THF), MeCN, toluene and dichloromethane. The procedure is carried out effectively in the presence of K2CO3. The reaction proceeds smoothly with aromatic aldehydes and arylamines possessing elec-tron-donating or-withdrawing groups. This method can be applied to the synthesis of the oilseed rape herbicide and is superior to the classical one in several aspects: cutting out several purification steps, minimizing solvent use and chemical waste, and saving time. Its advantages such as operational convenience, high-efficient synthesis, and starting material availability make it a desirable method for preparing amines with molecular diversity and biological activity. 展开更多
关键词 Reductive amination/intermolecular SNAr C-O and C-N bonds Amine PYRIMIDINE HERBICIDE
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