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Atmospheric pressure solvothermal synthesis of ceria-zirconia solid solutions and their large oxygen storage capacity

机译:大气压溶剂热合成二氧化铈-氧化锆固溶体及其大储氧能力

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Ceria-zirconia solid solution has a function as an oxygen storage material, which keeps air to fuel ratio (A/F) on a stoichiometric composition at the surface of three-way catalyst (TWC) for automotive exhaust. When A/F could be kept stoichiometric, TWC shows good catalytic activity. At first, ceria which dissolves 20 mol% of zirconia was developed by Ozawa et al. in 1987. After that, the ceria-zirconia solid solution was improved to achieve a complete solubility in the solid state at nano-level by surfactant modified homogeneous coprecipitation (J catal 169:490, 1997). Nano-level solid solution of ceria and zirconia could have been made by various methods. Those materials have similar amount of oxygen storage capacity (OSC). The improvement of OSC comes from the larger amount of bulk oxygen that can contributes OSC by the larger amount of zirconia dissolving into ceria (Catal Lett 33(1-2):193-200 1995). Solvothermal synthesis is usually done in a higher temperature than that can be reached under atmospheric pressure. The higher temperature accelerates generation of precipitation; however, a pressure vessel is necessary, and such a hermetically closed system is unsuitable to the material synthesis of the low-value-added product. Atmospheric pressure solvothermal (APS) synthesis was applied to ceria-zirconia solid solutions in this study. The APS ceria-zirconia showed larger amount of OSC. The excellent OSC performance was presumed to come from further uniformity of zirconium ions in the ceria lattice.
机译:二氧化铈-氧化锆固溶体具有作为储氧材料的功能,其在用于汽车尾气的三效催化剂(TWC)的表面上保持化学计量成分上的空燃比(A / F)。当A / F可以保持化学计量时,TWC显示出良好的催化活性。首先,Ozawa等人开发了可溶解20摩尔%氧化锆的二氧化铈。 1987年,氧化铈-氧化锆固溶体通过表面活性剂改性的均相共沉淀进行了改进,以实现在纳米级的固态完全溶解(J catal 169:490,1997)。可以通过各种方法制备二氧化铈和氧化锆的纳米级固溶体。这些材料具有相似的氧气存储容量(OSC)。 OSC的改进来自大量的氧气,这些氧气可以通过将大量的氧化锆溶解到二氧化铈中来促进OSC(Catal Lett 33(1-2):193-200 1995)。溶剂热合成通常在比大气压下可达到的温度更高的温度下进行。较高的温度加速了沉淀的产生。然而,压力容器是必需的,并且这种密封的系统不适用于低附加值产品的材料合成。在这项研究中,常压溶剂热(APS)合成应用于二氧化铈-氧化锆固溶体。 APS氧化铈-氧化锆显示出大量的OSC。据推测,出色的OSC性能来自二氧化铈晶格中锆离子的进一步均匀性。

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