首页> 外文期刊>Journal of Nanostructures >Synthesis of 3,4-dihydropyrimidinones using nano γ-Al2O3/BF3/Fe3O4 as an efficient magnetic nanocatalyst under solvent-free conditions
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Synthesis of 3,4-dihydropyrimidinones using nano γ-Al2O3/BF3/Fe3O4 as an efficient magnetic nanocatalyst under solvent-free conditions

机译:在无溶剂条件下将纳米γ-Al2O3 / BF3 / Fe3O4合成3,4-二氢嘧啶酮的3,4-二氢嘧啶酮作为高效磁性纳米催化剂

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Nano-γ-Al2O3/BF3/Fe3O4 magnetic nanoparticles was synthesized and characterized with Fourier Transform Infrared (FT-IR), Powder X-ray diffraction (XRD), Field Emission Scanning Electron Microscopy (FESEM), Transmittance Electron Microscopy (TEM), Vibrating Sample Magnetometer (VSM), Brunauer–Emmett–Teller (BET) and Thermal Gravimetry (TGA). Dihydropyrimidinones (DHP) act as antivirals, antibacterial, antifungal, antiinflammatory, antioxidan, anticarcinogen, calcium channel blockers, antihypertensive, anti-cancer and anti-HIV compounds. Nano-γ-Al2O3/BF3/Fe3O4 magnetic nanoparticles as an efficient catalyst was applied for the mild and green one-pot multicomponent synthesis of 3,4-dihydro pyrimidine-2(1H)-ones/thiones under solvent-free conditions. Biginelli reaction proceeds through an aldehyde, β-keto ester and urea or thiourea to the dihydropyrimidinone. Excellent yields of dihydropyrmidinones are gained within a short reaction time. The proposed method offers several advantages such as short reaction time, high efficiency, smooth purification, cleaning reaction, ease of recovery, and reusable catalyst. The structure and purity of these compounds were confirmed using IR and 1H NMR and 13C NMR spectral analysis. Meanwhile, the physical property of products were compared with reported ones.
机译:合成纳米γ-Al2O3 / BF3 / Fe3O4磁性纳米粒子,用傅里叶变换红外(FT-IR),粉末X射线衍射(XRD),场发射扫描电子显微镜(FeSEM),透射率电子显微镜(TEM),振动样品磁力计(VSM),Brunauer-Emmett-Teller(Bet)和热重量(TGA)。二氢嘧啶酮(DHP)充当抗病毒,抗菌,抗真菌,抗炎,抗氧化糖,抗癌剂,钙通道阻滞剂,抗高血压,抗癌和抗HIV化合物。纳米γ-Al2O3 / BF3 / Fe3O4磁性纳米颗粒作为一种有效催化剂,在无溶剂条件下适用于温和和绿色一锅多组合合成3,4-二氢嘧啶-2(1H) - 酮的溶剂。 Biginelli反应通过醛,β-酮酯和尿素或硫脲进入二氢嘧啶酮。在短反应时间内获得优异的二氢吡啶萘酮的产率。该方法提供了几种优点,如短反应时间,高效率,平滑净化,清洁反应,易于回收率和可重复使用的催化剂。使用IR和1H NMR和13C NMR光谱分析来确认这些化合物的结构和纯度。同时,将产品的物理性质与报告的物质进行了比较。

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