Research Center of Nano Science and Technology, Shanghai University, Shanghai 200444, China.
Dalton Trans. 2012 Dec 28;41(48):14455-75. doi: 10.1039/c2dt31759a.
Because of their excellent properties and extensive applications, ceria nanomaterials have attracted much attention in recent years. This perspective provides a comprehensive review of current research activities that focus on the shape-controlled synthesis methods of ceria nanostructures. We elaborate on the synthesis strategies in the following four sections: (i) oriented growth directed by the crystallographic structure of cerium-based materials; (ii) oriented growth directed by the use of an appropriate capping reagent; (iii) growth confined or dictated by various templates; (iv) other potential methods for generating CeO(2) nanomaterials. In this perspective, we also discuss the catalytic applications of ceria nanostructures. They are often used as active components or supports in many catalytic reactions and their catalytic activities show morphology dependence. We review the morphology dependence of their catalytic performances in carbon monoxide oxidation, water-gas shift, nitric oxide reduction, and reforming reactions. At the end of this review, we give a personal perspective on the probable challenges and developments of the controllable synthesis of CeO(2) nanomaterials and their catalytic applications.
由于其优异的性能和广泛的应用,铈纳米材料近年来引起了广泛关注。本综述全面介绍了目前专注于控制氧化铈纳米结构形状的合成方法的研究活动。我们在以下四个部分详细阐述了合成策略:(i)基于基于铈材料的晶体结构的定向生长;(ii)通过使用适当的封端试剂进行的定向生长;(iii)受各种模板限制或控制的生长;(iv)生成 CeO(2)纳米材料的其他潜在方法。在本综述中,我们还讨论了氧化铈纳米结构的催化应用。它们通常作为许多催化反应中的活性组分或载体,其催化活性表现出形态依赖性。我们综述了它们在一氧化碳氧化、水汽变换、一氧化氮还原和重整反应中的形态依赖性催化性能。在本综述的最后,我们对 CeO(2)纳米材料的可控合成及其催化应用的可能挑战和发展给出了个人的看法。