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合成具有增强的低温 CO 氧化活性的多孔 CuO-CeO2 纳米球。

Synthesis of porous CuO-CeO2 nanospheres with an enhanced low-temperature CO oxidation activity.

机构信息

Key Laboratory of Cluster Science, Ministry of Education of China, Department of Chemistry, Beijing Institute of Technology, Beijing, 100081, PR China.

出版信息

Nanoscale. 2010 Dec;2(12):2739-43. doi: 10.1039/c0nr00446d. Epub 2010 Oct 13.

Abstract

CuO-CeO2 nanospheres with a porous structure were synthesized by an improved urea method involving first hydrothermal treatment to get Ce-Cu binary precursor and then the calcination of the precursor. The CuO-CeO2 nanospheres consist of spherical particles with diameters in the range of 300-400 nm. These nanospheres are actually composed of nanoparticles of ca. 10 nm, resulting in the formation of a mesoporous structure. Compared with conventional urea method, in which Ce-Cu binary precursor is commonly achieved in an oil bath at appropriate temperature, the Ce-Cu binary precursor obtained via the hydrothermal process could be more highly homogeneous and more highly interdispersed CuO-CeO2 thus was formed. In addition, the resulted porous CuO-CeO2 catalyst has a lower CO oxidation temperature of as low as 71 °C.

摘要

氧化铜-氧化铈纳米球具有多孔结构,采用改进的尿素法合成,包括首先进行水热处理以得到 Ce-Cu 二元前体,然后对前体进行煅烧。CuO-CeO2 纳米球由直径在 300-400nm 范围内的球形颗粒组成。这些纳米球实际上由约 10nm 的纳米颗粒组成,形成了介孔结构。与传统的尿素法相比,通常在适当温度的油浴中制备 Ce-Cu 二元前体,通过水热法获得的 Ce-Cu 二元前体可以更加均匀和高度分散,从而形成 CuO-CeO2。此外,所得多孔 CuO-CeO2 催化剂具有低至 71°C 的 CO 氧化温度。

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