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CuCO3-CuO nanocomposite as a novel and environmentally friendly catalyst for triazole synthesis

机译:CuCO3-CuO纳米复合材料,是新型环保的三唑合成催化剂

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This paper focuses on the use of natural sources for the preparation of efficient and low cost catalysts. CaCO3 is obtained from cuttlefish bone and was modified by the cation exchange of Ca2+ by Cu2+ in CaCO3 using solutions of copper (Cu(NO3)(2)) at different concentrations. The modification of the solids was investigated using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), energy dispersive spectrometry (EDS) and ultraviolet-visible (UV-vis) spectroscopy. The results show that the copper exchanged materials contain a CuCO3-CuO nanoparticle composite. The obtained solids were used as catalysts for the cycloaddition reaction of different azides with activated alkenes at room temperature under liquid phase conditions. The different parameters which affect the reaction were investigated such as reaction time, temperature of the reaction, effect of the copper content, catalyst mass, effect of the solvent and nature of the azide. High yields were obtained when the catalyst contained more copper. The best catalysts were calcined at different temperatures (200, 300, 400, 500 degrees C) in order to determine whether the active phase was CuCO3 or CuO in the catalytic reaction. The XRD analysis of the calcined composites shows that an increase in calcination temperature leads to the formation of the CuO phase. On the other hand, the use of these calcined materials as catalysts shows that the active phase is copper carbonate. Finally, a new method for preparing triazoles with short reaction times was developed by the use of a cheap environmentally friendly catalyst.
机译:本文着重于利用天然资源制备高效和低成本的催化剂。 CaCO3从乌贼骨中获得,并通过使用不同浓度的铜溶液(Cu(NO3)(2))通过Ca2 +中的Cu2 +与Ca2 +进行阳离子交换而改性。使用X射线衍射(XRD),傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM),能量色散光谱(EDS)和紫外可见光谱(UV-vis)光谱研究了固体的改性。结果表明,铜交换材料包含CuCO3-CuO纳米颗粒复合材料。所获得的固体用作在室温下在液相条件下不同叠氮化物与活化烯烃的环加成反应的催化剂。研究了影响反应的不同参数,例如反应时间,反应温度,铜含量的影响,催化剂质量,溶剂的影响以及叠氮化物的性质。当催化剂包含更多的铜时,获得高产率。最好的催化剂在不同的温度(200、300、400、500摄氏度)下煅烧,以确定催化反应中活性相是CuCO3还是CuO。煅烧复合材料的XRD分析表明,煅烧温度的升高会导致CuO相的形成。另一方面,使用这些煅烧的材料作为催化剂表明活性相是碳酸铜。最后,通过使用廉价的环保催化剂,开发了一种制备反应时间短的三唑的新方法。

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