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Key factor affecting the basicity of mesoporous silicas MCM-41: effect of surfactant extraction time and Si/Al ratio

机译:影响介孔硅酸盐MCM-41碱度的关键因素:表面活性剂提取时间和Si / Al比的影响

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Mesoporous silica Si-MCM-41 was prepared by hydrothermal method using TEOS and CTAB as the source of silica and structuring agent, respectively. The surface of the as-synthesized material was treated using HCl/ETOH solvent to remove the CTA surfactant instead of using the calcination. Characterization of the catalysts was performed using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), nitrogen sorption at 77 K, scanning and transmission electronic microscopy (SEM, TEM), and thermogravimetric analysis TGA. The catalytic properties of the prepared materials in the condensation of acetophenone with ethyl cyanoacetate were studied. The effects of the catalyst type, Si/Al ratio, reaction kinetics, and reaction temperature were also investigated to find an optimal parameter. The results show that an interesting yield was obtained (about 96%) in a short reaction time; it is found that the yields of products depend not only on the amount of surfactant inside the mesopores but also on the Si/Al ratio. The catalyst reuse shows that this catalyst can be used up to five cycles, and at temperatures higher than 50 A degrees C, the yield of products decreases due to the slight destruction of the catalyst as confirmed by the XRD analysis. Based on the results obtained, a possible mechanism of the condensation reaction of acetophenone was proposed.
机译:通过使用TEOS和CTAB作为二氧化硅和结构剂来源的水热法制孔制备介孔二氧化硅Si-MCM-41。使用HCl / EtOH溶剂处理如合成材料的表面,以除去CTA表面活性剂,而不是使用煅烧。使用X射线衍射(XRD),傅里叶变换红外光谱(FTIR),77K,扫描和传输电子显微镜(SEM,TEM)和热重分析TGA,进行催化剂的表征。研究了制备的制备材料催化性质,在苯乙酸乙基乙烯酮缩合中的缩合。还研究了催化剂型,Si / Al比,反应动力学和反应温度的影响以找到最佳参数。结果表明,在短反应时间内获得了有趣的产量(约96%);结果发现产物的产量不仅取决于所需opores内的表面活性剂,而且取决于Si / Al比。催化剂再利用表明,该催化剂可用于高达5个循环,并且在高于50℃的温度下,由于XRD分析证实,由于催化剂的轻微破坏,产品的产率降低。基于所得的结果,提出了苯乙酮的缩合反应的可能机制。

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