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二氧化铈纳米棒以及负载在二氧化铈纳米棒上的金纳米晶体作为催化剂。

CeO2 nanorods and gold nanocrystals supported on CeO2 nanorods as catalyst.

作者信息

Huang P X, Wu F, Zhu B L, Gao X P, Zhu H Y, Yan T Y, Huang W P, Wu S H, Song D Y

机构信息

Institute of New Energy Material Chemistry, Department of Materials Chemistry, Nankai University, Tianjin 300071, China.

出版信息

J Phys Chem B. 2005 Oct 20;109(41):19169-74. doi: 10.1021/jp052978u.

Abstract

The formation mechanism of uniform CeO2 structure at the nanometer scale via a wet-chemical reaction is of great interest in fundamental study as well as a variety of applications. In this work, large-scale well-crystallized CeO2 nanorods with uniform diameters in the range of 20-30 nm and lengths up to tens of micrometers are first synthesized through a hydrothermal synthetic route in 5 M KOH solution at 180 degrees C for 45 h without any templates and surfactants. The nanorod formation involves dehydration of CeO2 nanoparticles and orientation growth along the 110 direction in KOH solution. Subsequently, gold nanoparticles with crystallite sizes between 10 and 20 nm are loaded on the surface of CeO2 nanorods using HAuCl4 solution as the gold source and NaBH4 solution as a reducing agent. The synthesized Au/CeO2 nanorods demonstrate a higher catalytic activity in CO oxidation than the pure CeO2 nanorods.

摘要

通过湿化学反应在纳米尺度上形成均匀的CeO2结构的机制,在基础研究以及各种应用中都备受关注。在这项工作中,首先通过水热合成路线,在5M KOH溶液中于180℃下反应45小时,无需任何模板和表面活性剂,合成了直径均匀在20 - 30nm范围内、长度可达数十微米的大规模结晶良好的CeO2纳米棒。纳米棒的形成涉及CeO2纳米颗粒的脱水以及在KOH溶液中沿110方向的取向生长。随后,以HAuCl4溶液为金源、NaBH4溶液为还原剂,将微晶尺寸在10至20nm之间的金纳米颗粒负载在CeO2纳米棒表面。合成的Au/CeO2纳米棒在CO氧化中表现出比纯CeO2纳米棒更高的催化活性。

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