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Synthesis of quinazoline-2,4(1H,3H)-dione from carbon dioxide and 2-aminobenzonitrile using mesoporous smectites incorporating alkali hydroxide

机译:介孔蒙皂石结合碱金属氢氧化物由二氧化碳和2-氨基苄腈合成喹唑啉-2,4(1H,3H)-二酮

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摘要

A series of magnesium containing mesoporous smectites has been prepared with and without incorporation of alkali hydroxide ( NaOH, KOH or LiOH) and employed for the reaction of CO2 with aminobenzonitrile to produce quinazoline-2,4(1H,3H)-dione. The effects of the quantity and kind of the incorporated alkali atoms on the catalytic properties of the smectites were investigated. Characterization of the smectites has shown that the incorporation of alkali atoms reduces their surface area and total pore volume but enhances the amount and strength of their basic sites. The product yield increases with the amount of alkali atoms incorporated. The incorporation of Li was less effective than that of Na and K for the enhancement of the yield. It has been suggested that weak and/or moderate base sites are responsible for the reaction. The active sites should be alkali hydroxide particles existing between the smectite layers for the alkali incorporated smectites, while for the un-incorporated smectite, the active sites should be the Mg atoms and/or the neighboring O atoms. The Na incorporated smectite was deactivated by repeated catalyst recycling, while such deactivation was not observed with the un-incorporated smectite. The reason for the deactivation was discussed in connection with the structures of the active sites and the actions of the reaction intermediate.
机译:在有或没有加入碱金属氢氧化物(NaOH,KOH或LiOH)的情况下,已制备了一系列含镁的介孔蒙脱石,并用于CO2与氨基苄腈的反应以生成喹唑啉-2,4(1H,3H)-二酮。研究了引入的碱原子的数量和种类对​​绿土催化性能的影响。绿土的特征表明,引入碱原子会减小其表面积和总孔体积,但会增加其碱性位点的数量和强度。产物收率随引入的碱原子量的增加而增加。 Li的掺入比Na和K的掺入对提高产率的效果差。已经提出,弱和/或中等碱基位点负责该反应。活性位点应该是存在于蒙脱石层之间的碱金属氢氧化物颗粒,用于碱结合的蒙脱石,而对于未结合的蒙脱石,活性位点应该是Mg原子和/或相邻的O原子。通过重复的催化剂再循环使掺入Na的蒙脱石失活,而未掺入的蒙脱石未观察到这种失活。结合活性位点的结构和反应中间体的作用讨论了失活的原因。

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