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Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction

机译:实验设计的条件优化了Biginelli反应中纳米结构RuO2催化性能的条件

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Nanostructured RuO2 powders were synthesized via a hydrothermal method at 180 °C for 12 h using 1 and 2 M NaOH aqueous solutions. The structure of the obtained nanomaterials was investigated by powder X-ray diffraction (PXRD) technique. The morphology the obtained materials were studied by field emission scanning electron microscope (FESEM). The technique showed that with changing the reaction rout, the homogeneity of the size and morphology of the synthesized nanomaterials were changed. It was found that the morphology of the obtained materials were spherical particles using 2 M NaOH aqueous solution. Catalytic performance of the synthesized nanomaterials was investigated in Biginelli reactions for the one-pot synthesis of 3,4-dihydropyrimidin-2(1H)-ones (DHPMs) using Benzaldehyde derivatives, urea and ethylacetoacetate as raw materials. Experimental design method was used to obtain optimized reaction conditions. It was found that the optimized conditions were 0.028 g of catalyst, 110 °C reaction temperature and 66 min reaction time.
机译:通过使用1和2 M NaOH水溶液在180°C下水热法合成纳米结构的RuO2粉末12 h。通过粉末X射线衍射(PXRD)技术研究了获得的纳米材料的结构。通过场发射扫描电子显微镜(FESEM)研究获得的材料的形态。该技术表明,随着反应路线的改变,合成纳米材料的尺寸和形态的均匀性也随之改变。发现所获得的材料的形态是使用2M NaOH水溶液的球形颗粒。在Biginelli反应中以苯甲醛衍生物,尿素和乙酰乙酸乙酯为原料一锅合成3,4-二氢嘧啶-2(1H)-酮(DHPMs),研究了合成纳米材料的催化性能。实验设计方法用于获得优化的反应条件。发现最佳条件为0.028g催化剂,110℃反应温度和66分钟反应时间。

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