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胶体法制备的 Pt 纳米线与浸渍法制备的 Pt 纳米颗粒:吸附和反应性能比较。

Colloidally prepared Pt nanowires versus impregnated Pt nanoparticles: comparison of adsorption and reaction properties.

机构信息

Institute of Materials Chemistry, Vienna University of Technology, Veterinärplatz 1/GA, A-1210 Vienna, Austria.

出版信息

Langmuir. 2010 Nov 2;26(21):16330-8. doi: 10.1021/la1015912.

Abstract

Ligand-capped Pt nanowires, prepared by colloidal synthesis and deposited on a high surface area γ-Al(2)O(3) support, were subjected to surface characterization by electron microscopy and FTIR spectroscopy using CO as a probe molecule. The structural, adsorption, and catalytic reaction properties of the colloidal Pt nanowires were compared to those of conventional, impregnated Pt nanoparticles on the same Al(2)O(3) support. In situ FTIR spectroscopy indicated ligand effects on the CO resonance frequency, irreversible CO-induced surface roughening upon CO adsorption, and a higher resistance of colloidal catalysts toward oxidation (both in oxygen and during CO oxidation), suggesting that the organic ligands might protect the Pt surface. Elevated temperature induced a transformation of Pt nanowires to faceted Pt nanoparticles. The colloidal catalyst was active for hydrodechlorination of trichloroethylene (TCE), but no ligand effect on selectivity was obtained.

摘要

配体封端的 Pt 纳米线通过胶体合成制备,并沉积在高表面积的 γ-Al(2)O(3)载体上,然后使用 CO 作为探针分子通过电子显微镜和傅里叶变换红外光谱进行表面特性研究。将胶体 Pt 纳米线的结构、吸附和催化反应性质与相同 Al(2)O(3)载体上的传统浸渍 Pt 纳米粒子进行了比较。原位傅里叶变换红外光谱表明配体对 CO 共振频率、CO 吸附时不可逆的 CO 诱导表面粗化以及胶体催化剂对氧化(氧气中以及在 CO 氧化过程中)的更高抵抗力的影响,这表明有机配体可能保护 Pt 表面。升高的温度会导致 Pt 纳米线向面心立方 Pt 纳米粒子转变。胶体催化剂对三氯乙烯(TCE)的加氢脱氯具有活性,但在选择性方面没有配体效应。

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