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High efficient Aldol condensation reaction utilizing modified calcium oxide as stable solid base catalyst

机译:利用改性氧化钙作为稳定的固体碱催化剂的高效Aldol缩合反应

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Aldol condensation of acetophenone and benzaldehyde, as well as various benzaldehydes was carried out efficiently to produce chalcone with a good selectivity and high yields by using modified CaO as a solid base catalyst. Stability and catalytic activity of commercial CaO were significantly improved after modifying calcium oxide with bromobenzene in a simple way. An Aldol yield higher than 98.9% was obtained after the reaction was conducted for 3 h. This time interval is considerably shorter when compared to a period of 12 h needed for the commercial CaO to reach 92.1% yield under optimum activation. The high catalytic activity of modified CaO suggests that heterogeneous aldolisation was greatly improved by changing its hydrophilic properties. The influence of several reaction parameters, such as temperature and catalyst loading, was investigated. The humidity test over modified CaO reveals that the basic sites of modified CaO are resistant to CO2 and moisture. The type of aldehyde has great influence on the yield of Aldol condensation. Based on the results of characterization by Fourier transform-infrared spectrometry (FT-IR) and thermogravimetric measurements (TG), it was concluded that the modifier was chemically bonded to the surface of CaO and nearly no Ca(OH)(2) was formed during the modification process.
机译:通过使用改性的CaO作为固体碱催化剂,高效地进行苯乙酮和苯甲醛以及各种苯甲醛的醛醇缩合反应,从而以良好的选择性和高收率生产查尔酮。用溴苯简单改性氧化钙后,商业CaO的稳定性和催化活性得到了显着改善。反应进行3小时后,Aldol收率高于98.9%。与商用CaO在最佳活化条件下达到92.1%的收率所需的12小时相比,此时间间隔要短得多。改性CaO的高催化活性表明,通过改变其亲水性,异质醛醇缩合反应得到了极大的改善。研究了几个反应参数的影响,例如温度和催化剂负载量。在改性CaO上进行的湿度测试表明,改性CaO的基本位点具有抗CO2和湿气的能力。醛的类型对醛醇缩合的产率有很大的影响。根据傅立叶变换红外光谱(FT-IR)和热重测量(TG)表征的结果,得出的结论是,改性剂化学键合在CaO表面,几乎没有形成Ca(OH)(2)在修改过程中。

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