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Potassium-incorporated mesoporous carbons: strong solid bases with enhanced catalytic activity and stability

机译:Potassium-incorporated介孔碳:强劲增强的催化活性和坚实的基地稳定

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With the growing demand for green chemistry, mesoporous solid strong bases have attracted increasing attention in view of their tremendous potential as eco-friendly catalysts in diverse reactions. In the present study, K-incorporated mesoporous carbon is successfully prepared through high-temperature chemical activation combined with the hard-templating method. The combined method is proved to be very effective at promoting the formation of stable K species that strongly interact with the carbon support. The obtained solid bases thus have both high activity and enhanced water-resistant stability, which is reflected in their catalysis of the transesterification of ethylene carbonate with methanol to dimethyl carbonate. A much higher turnover frequency (TOF) value (430.4 h(-1)) and better reusability are thus observed, compared with a series of typical and popular solid bases, such as MgO (TOF, 1.0 h(-1)) and CaO/SBA-15 (TOF, 6.4 h(-1)).
机译:绿色化学日益增长的需求,介孔固体强碱吸引了越来越多的关注的巨大作为环保催化剂在不同的潜力反应。介孔碳是成功的准备通过高温化学活化结合hard-templating方法。结合方法被证明是非常有效的促进稳定的K物种的形成强烈与碳的支持。从而获得坚实的基地都高的活动稳定和增强防水,这是反映在他们的催化碳酸亚乙酯的酯基转移作用碳酸二甲酯甲醇。周转频率(TOF)值(430.4 h (1))因此观察,更好的可重用性比较一系列的典型的和受欢迎的坚实的基础,如采用(TOF 1.0 h(1))和曹/ SBA-15 (TOF),6.4 h(1))。

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