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Nitrogen-doped dual mesoporous carbon for the selective oxidation of ethylbenzene

机译:Nitrogen-doped双介孔碳的乙苯的选择性氧化

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A nanocasting method to fabricate nitrogen-doped dual mesoporous carbon is proposed by the carbonization of nitrile functional ionic liquid (FIL) grafted SBA-15 for the first time. These carbon materials have high nitrogen content (12.8%), large specific surface areas (763 m(2) g(-1)) and uniform rod morphologies, which are derived from FILs grafted on the surface of SBA-15. Furthermore, by adjusting the impregnation amount of ionic liquids on SBA-15, pore structures of these carbon materials can be adjusted from single to dual mesopores. The developed dual mesoporous carbon materials exhibit good catalytic performance in the selective oxidation of ethylbenzene, ascribed to the promoting effects of nitrogen-doping, high surface area and dual mesostructure. It may be concluded that the dual mesostructure has an advantage over a single mesostructure to obtain a fast mass transport rate, resulting in higher acetophenone yield.
机译:一个制造nitrogen-doped nanocasting方法提出的双介孔碳碳化的腈功能性离子液体(FIL)嫁接SBA-15首次。碳材料具有较高的含氮量(12.8%)、大的比表面区域(763米(2)g(1))和均匀杆形态,这是来自儿子表面接枝SBA-15。SBA-15浸渍量的离子液体,这些碳材料的孔隙结构调整从单一到双间隙孔。开发双介孔碳材料表现出良好的催化性能乙苯的选择性氧化,归因于nitrogen-doping的促进效应,高表面积和双中构造。得出的结论是,双中构造一个优势一个中构造来获得高质量传输速率快,导致苯乙酮产量。

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