Suppr超能文献

介孔 ZrO(2)/碳复合材料的简便合成及其在乙苯氧化脱氢反应中优异的性能。

Facile synthesis of highly stable and well-dispersed mesoporous ZrO(2)/carbon composites with high performance in oxidative dehydrogenation of ethylbenzene.

机构信息

Department of Chemistry and Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Laboratory of Advanced Materials, Fudan University, Shanghai, 200433, People's Republic of China.

出版信息

Phys Chem Chem Phys. 2010 Sep 28;12(36):10996-1003. doi: 10.1039/c004469e. Epub 2010 Jul 28.

Abstract

Highly ordered mesoporous ZrO(2)/carbon (FDU-15) composites have been synthesized via a facile evaporation induced triconstituent co-assembly (EISA) approach by using Pluronic F127 as a template and zirconium oxychloride octahydrate and resol as Zr and carbon sources. The synthesized mesoporous composites exhibit a highly ordered two-dimensional (2-D) hexagonal mesostructure with relatively high specific surface areas (up to 947 m(2) g(-1)), pore sizes around 3.8 nm and high pore volumes (up to 0.71 cm(3) g(-1)). The results clearly show that the crystalline zirconia nanoparticles (ca. 1.9-3.9 nm) are well-dispersed in amorphous matrices of the ordered mesoporous carbon FDU-15 materials, which construct the nanocomposites. The ordered mesostructures of the obtained ZrO(2)/FDU-15 composites can be well-retained even at the high pyrolysis temperature (up to 900 degrees C), suggesting a high thermal stability. The zirconia content of the ZrO(2)/FDU-15 composites can be tunable in a wide range (up to 47%). Moreover, the resultant mesoporous ZrO(2)/FDU-15 composites exhibit high catalytic activity in oxidative dehydrogenation (ODH) of ethylbenzene (EB) to styrene (ST), with high ethylbenzene conversion (59.6%) and styrene selectivity (90.4%), which is mainly attributed to the synergistic catalytic effect between the oxygen-containing groups located on the carbon pore walls and weakly basic sites of the nanocrystalline ZrO(2). Furthermore, the high specific surface areas and opening pore channels are also responsible for their high catalytic activity. Therefore, it is a very promising catalyst material in styrene production on an industrial scale.

摘要

有序介孔 ZrO2/碳(FDU-15)复合材料已通过简便的蒸发诱导三组分共组装(EISA)方法合成,该方法使用 Pluronic F127 作为模板,四氯化氧锆八水合物和酚醛树脂作为 Zr 和碳源。合成的介孔复合材料具有高度有序的二维(2-D)六方介孔结构,具有较高的比表面积(高达 947 m2/g),孔径约为 3.8nm,孔体积较高(高达 0.71cm3/g)。结果清楚地表明,结晶氧化锆纳米颗粒(约 1.9-3.9nm)在有序介孔碳 FDU-15 材料的无定形基质中均匀分散,构成纳米复合材料。即使在较高的热解温度(高达 900°C)下,也可以很好地保留所获得的 ZrO2/FDU-15 复合材料的有序介孔结构,表明其具有较高的热稳定性。ZrO2/FDU-15 复合材料的氧化锆含量可以在很宽的范围内调节(高达 47%)。此外,所得介孔 ZrO2/FDU-15 复合材料在乙苯(EB)氧化脱氢(ODH)制苯乙烯(ST)反应中表现出高催化活性,具有高乙苯转化率(59.6%)和苯乙烯选择性(90.4%),这主要归因于含氧基团位于碳孔壁上和纳米晶 ZrO2 的弱碱性位之间的协同催化作用。此外,高比表面积和开放的孔道也有助于其高催化活性。因此,它是一种在工业规模上生产苯乙烯非常有前途的催化剂材料。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验