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蛋黄壳型金纳米颗粒作为多相催化中载体效应研究的模型材料:以 CO 氧化反应为例,比较 Au、@C 和 Au、@ZrO2。

Yolk-shell gold nanoparticles as model materials for support-effect studies in heterogeneous catalysis: Au, @C and Au, @ZrO2 for CO oxidation as an example.

机构信息

Department of Heterogeneous Catalysis, Max-Planck Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470 Mülheim an der Ruhr, Germany.

出版信息

Chemistry. 2011 Jul 18;17(30):8434-9. doi: 10.1002/chem.201100318. Epub 2011 Jun 7.

Abstract

The use of nanostructured yolk-shell materials offers a way to discriminate support and particle-size effects for mechanistic studies in heterogeneous catalysis. Herein, gold yolk-shell materials have been synthesized and used as model catalysts for the investigation of support effects in CO oxidation. Carbon has been selected as catalytically inert support to study the intrinsic activity of the gold nanoparticles, and for comparison, zirconia has been used as oxidic support. Au, @C materials have been synthesized through nanocasting using two different nonporous-core@mesoporous-shell exotemplates: Au@SiO(2)@ZrO(2) and Au@SiO(2)@m-SiO(2). The catalytic activity of Au, @C with a gold core of about 14 nm has been evaluated and compared with Au, @ZrO(2) of the same gold core size. The strong positive effect of metal oxide as support material on the activity of gold has been proved. Additionally, size effects were investigated using carbon as support to determine only the contribution of the nanoparticle size on the catalytic activity of gold. Therefore, Au, @C with a gold core of about 7 nm was studied showing a less pronounced positive effect on the activity than the metal oxide support effect.

摘要

使用纳米结构蛋黄壳材料为多相催化中的机理研究提供了一种区分载体和颗粒尺寸效应的方法。在此,合成了金蛋黄壳材料并将其用作 CO 氧化中载体效应研究的模型催化剂。选择碳作为催化惰性载体来研究金纳米粒子的固有活性,并进行比较,使用氧化锆作为氧化载体。通过使用两种不同的无孔核@介孔壳外模板:Au@SiO(2)@ZrO(2)和 Au@SiO(2)@m-SiO(2),通过纳米铸造合成了 Au,@C 材料。评估了具有约 14nm 金核的 Au,@C 的催化活性,并将其与相同金核尺寸的 Au,@ZrO(2)进行了比较。证明了金属氧化物作为载体材料对金活性的强烈正效应。此外,还使用碳作为载体研究了尺寸效应,以确定仅纳米颗粒尺寸对金催化活性的贡献。因此,研究了具有约 7nm 金核的 Au,@C,其对活性的积极影响不如金属氧化物载体效应明显。

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