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首页> 外文期刊>Journal of Materiomics >Self-supported yttria-stabilized zirconia mesocrystals with tunable mesopores prepared by a chemi-thermal process
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Self-supported yttria-stabilized zirconia mesocrystals with tunable mesopores prepared by a chemi-thermal process

机译:化学热法制备的具有可调介孔的自支撑氧化钇稳定的氧化锆介晶

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Mesoporous mesocrystals are highly desired in catalysis, energy storage, medical and many other applications, but most of synthesis strategies involve the usage of costly chemicals and complicated synthesis routes, which impede the commercialization of such materials. During the sintering of dense ceramics, coarsening is an undesirable phenomenon which causes the growth of the grains as well as the pores hence hinders the densification, however, coarsening is desired in the sintering of porous ceramics to expand the pore sizes while retaining the total pore volume. Here we report a chemi-thermal process, during which nanocrystallite aggregates were synthesized by hydrothermal process and then converted to the product by sintering. Through this strategy, we synthesized mesoporous self-supported mesocrystals of yttria-stabilized zirconia with tunable pore size and the process was then scaled-up to industrial production. The thermal conductivity measurement shows that the mesoporous powder is a good thermal isolator. The monolith pellets can be obtained by SPS sintering under high pressure and the mesoporosity is retained in the monolith pellets. This work features facile and scalable process as well as low cost raw chemicals making it highly desirable in industrial applications.
机译:介孔介晶在催化,储能,医学和许多其他应用中是非常需要的,但是大多数合成策略涉及使用昂贵的化学物质和复杂的合成路线,这阻碍了这类材料的商业化。在致密陶瓷的烧结过程中,粗化是一种不希望的现象,会导致晶粒和孔的生长,从而阻碍致密化,但是,在烧结多孔陶瓷时需要粗化以扩大孔径,同时保留总孔卷。在这里,我们报道了一个化学热过程,在此过程中,通过水热过程合成了纳米微晶聚集体,然后通过烧结将其转化为产物。通过这种策略,我们合成了具有可调孔径的氧化钇稳定的氧化锆介孔自支撑介孔晶体,然后将该工艺规模扩大到工业生产。热导率测量表明,介孔粉末是良好的热绝缘体。整体颗粒可以通过在高压下通过SPS烧结而获得,并且介孔性保留在整体颗粒中。这项工作具有简便,可扩展的过程以及低成本的化学原料,因此非常适合工业应用。

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