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首页> 外文期刊>Turkish journal of chemistry >Amino-functionalized mesostructured cellular foam silica: a highly efficient and recyclable catalyst in the Knoevenagel condensation reaction
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Amino-functionalized mesostructured cellular foam silica: a highly efficient and recyclable catalyst in the Knoevenagel condensation reaction

机译:氨基官能化的介孔泡沫硅石:Knoevenagel缩合反应中的高效可回收催化剂

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摘要

Mesostructured cellular foam silica was functionalized by an amino group (MCF-NH$_{2})$ using the postsynthesis grafting method and utilized as a recyclable catalyst for the Knoevenagel reaction to afford $lpha $, $eta $-unsaturated compounds. The catalyst was systematically characterized by various analyses such as nitrogen adsorption, X-ray diffraction, Fourier transform infrared spectrophotometry, scanning electron microscopy, transmission electron microscopy, thermogravimetric analysis, and Hammett indicator method. The results showed that MCF-NH$_{2}$ catalyst was successfully prepared with a high surface area of 215 m$^{2}$ g$^{-1}$ and a large pore volume of 1.37 cm$^{3}$ g$^{-1}$. Compared with the nonfunctionalized MCF sample, the window and cell sizes of MCF-NH$_{2}$ decreased after amino group modification, whose NH$_{2}$-loading density was 1.56 mmol g$^{-1}$. The optimal condition was investigated and the highest catalytic activity was obtained in the presence of 0.1 g of MCF-NH$_{2}$ catalyst under ultrasound irradiation at room temperature in the mixed solvent of ethanol and water with a volume ratio of 3:1. Various aromatic aldehydes and active methylene compounds were converted to their desired products with excellent yields within a short time. Moreover, MCF-NH$_{2}$ catalyst showed high recyclability, being used four times without any significant decrease in activity.
机译:使用后合成接枝方法,通过氨基(MCF-NH $ _ {2})$对介孔结构泡沫硅石进行功能化,并用作Knoevenagel反应的可循环催化剂,得到$ alpha $,$ beta $-不饱和化合物。通过各种分析,如氮吸附,X射线衍射,傅立叶变换红外分光光度法,扫描电子显微镜,透射电子显微镜,热重分析和Hammett指示剂方法对催化剂进行了系统表征。结果表明,成功制备了MCF-NH $ _ {2} $催化剂,具有高表面积215 m $ ^ {2} $ g $ ^ {-1} $和大孔体积1.37 cm $ ^ { 3} $ g $ ^ {-1} $。与未官能化的MCF样品相比,氨基修饰后MCF-NH $ _ {2} $的窗口和细胞大小减小,其NH $ _ {2} $的负载密度为1.56 mmol g $ ^ {-1} $ 。研究了最佳条件,在乙醇和水的混合比为3的条件下,在室温下超声辐照下,在0.1 g MCF-NH $ _ {2} $催化剂的存在下,获得了最高的催化活性。 1。各种芳族醛和活性亚甲基化合物在短时间内以优异的收率转化为所需的产物。而且,MCF-NH $ _ {2} $催化剂显示出高的可回收性,被使用了四次而活性没有明显降低。

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