首页> 外文期刊>Research on Chemical Intermediates >Aspartic-acid-loaded starch-functionalized Mn-Fe-Ca ferrite magnetic nanoparticles as novel green heterogeneous nanomagnetic catalyst for solvent-free synthesis of dihydropyrimidine derivatives as potent antibacterial agents
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Aspartic-acid-loaded starch-functionalized Mn-Fe-Ca ferrite magnetic nanoparticles as novel green heterogeneous nanomagnetic catalyst for solvent-free synthesis of dihydropyrimidine derivatives as potent antibacterial agents

机译:加载的淀粉官能化Mn-Fe-Ca铁氧体磁性纳米粒子作为新型绿色异质纳米磁性催化剂,用于无溶剂合成二氢嘧啶衍生物作为有效的抗菌剂

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摘要

Mn0.5Fe0.25Ca0.25Fe2O4@starch@aspartic acid magnetic nanoparticles (MNPs) as a new green nanocatalyst were designed and synthesized by a coprecipitation procedure. The structure of the aspartic-acid-loaded starch-functionalized Mn0.5Fe0.25Ca0.25Fe2O4 nanoparticles was evaluated by powder X-ray diffraction analysis, Fourier-transform infrared spectroscopy, vibrating-sample magnetometry, scanning electron microscopy, energy-dispersive X-ray spectroscopy, and thermogravimetric analysis. The ferrite magnetic nanoparticles exhibited superparamagnetic nature with saturation magnetization of 35 emu/g. The impact of the MnFeCaFe2O4@starch@aspartic acid MNPs was investigated in synthesis of 3,4-dihydropyrimidine derivatives by multicomponent reaction between thiourea/urea, acetylacetone, and various aryl aldehydes under solvent-free conditions. Facile workup, short reaction time, superb yield, and use of a reusable catalyst are the advantages of this method. The magnetic nanocatalyst was easily recovered and reused six times without considerable reduction in its catalytic activity. The invitro antibacterial activity of all synthesized pyrimidine derivatives was studied by agar well diffusion assay technique against four pathogenic bacterial strains, namely Staphylococcus aureus (ATCC no. 6538) and Staphylococcus epidermidis (ATCC no. 12228) as Gram-positive bacteria and Pseudomonas aeruginosa (ATCC no. 9027) and Escherichia coli (ATCC no. 8739) as Gram-negative bacteria. All compounds exhibited greater antibacterial activity compared with the reference drug ciprofloxacin.
机译:MN0.5FE0.25CA0.25FE2O4 @淀粉@天冬氨酸磁性纳米颗粒(MNP)作为一种新的绿色纳米催化剂设计和合成了CopRecipipation程序。通过粉末X射线衍射分析,傅立叶变换红外光谱,振动样磁力,扫描电子显微镜,能量分散X-评价了氨基酸碳官能化MN0.5FE0.25CA0.25FE2O4纳米颗粒的结构。光谱光谱和热重分析。铁氧体磁性纳米粒子表现出35埃姆/克的饱和磁化强度的超顺磁性性质。通过在无溶剂条件下通过硫脲/脲基,乙酰丙酮和各种芳基醛的多组分反应来研究MnFecafe2O4 @淀粉@天冬氨酸MnP的影响。容易处理,短反应时间,优质产量,以及可重复使用的催化剂的使用是该方法的优点。磁性纳米催化剂容易回收并重复使用六次,而不会降低其催化活性。通过琼脂孔扩散测定方法研究了所有合成的嘧啶衍生物的invitro抗菌活性,用于四种病原细菌菌株,即金黄色葡萄球菌(ATCC NO.6538)和葡萄球菌(ATCC NO.1228)作为革兰氏阳性细菌和假单胞菌铜绿假单胞菌( ATCC NO。9027)和大肠杆菌(ATCC NO.8739)作为革兰氏阴性细菌。与参考药物CiProfloxacin相比,所有化合物都表现出更大的抗菌活性。

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