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Synthesis of Ordered Mesoporous Zr-Al Composite Oxides with Excellent Structural and Textural Properties and Extremely High Stability

机译:具有优异结构和纹理性质的有序介孔ZR-Al复合氧化物的合成及极高的稳定性

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摘要

Ordered mesoporous Zr-Al composite oxide materials (denoted as OMZA-x) with different Zr contents have been synthesized by a solvent evaporation-inducing self-assembly procedure associated with a thermal treatment at 100 °C. A cooperative co-assembly process of amphiphilic triblock copolymer F127 molecules and inorganic hydroxyl species originated from the hydrolysis of Zr and Al precursors was proposed to explain the synthesis of OMZA-x. Compared to ordered mesoporous alumina prepared without introducing Zr species, the resultant OMZA-x exhibited a much more ordered mesostructure combined with a distinct increase in the pore volume and specific surface area. The highly homogenous doping of Zr into the mesopore walls together with the formation of Zr-O-Al bonds can effectively enhance the thermal and hydrothermal stability of OMZA-x. For instance, the ordered mesostructure and excellent textural properties of OMZA-6 prepared with the optimum atomic ratio of Al to Zr of 6 could be well maintained even after a high-temperature treatment at 1000 °C for 1 h or a hydrothermal treatment at 100 °C for 6 h.
机译:通过在100℃下热处理相关的溶剂蒸发诱导的自组装方法合成了具有不同Zr含量的具有不同Zr含量的有序的中孔Zr-Al复合氧化物(表示为OMZA-X)。提出了源自Zr和Al前体水解的两亲性三嵌段共聚物F127分子和无机羟基物质的协同加入过程,以解释OMZA-X的合成。与在不引入ZR物种的情况下制备的有序的介孔氧化铝相比,所得omza-X展示了更加有序的腹腔结构,与孔体积和比表面积不同。将Zr的高均匀掺杂与Zr-O-Al键的形成一起可以有效地提高OMZA-X的热和水热稳定性。例如,甚至在1000℃的高温处理1小时或100℃下的水热处理后,甚至可以很好地维持均匀的OMZA-6的有序的介质和Zr的优异造影性能。 °C 6小时。

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