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介孔硅内受限 Ag 纳米线的双溶剂法合成及其催化性能。

Synthesis of confined Ag nanowires within mesoporous silica via double solvent technique and their catalytic properties.

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, PR China.

出版信息

J Colloid Interface Sci. 2011 Jul 1;359(1):40-6. doi: 10.1016/j.jcis.2011.03.049. Epub 2011 Mar 22.

Abstract

Ag nanowires within the channels of mesoporous silica have been successfully synthesized via a double solvent technique, in which n-hexane is used as a hydrophobic solvent to disperse mesoporous silica and an AgNO(3) aqueous solution is used as a hydrophilic solvent to fill mesochannels. The morphology of the obtained Ag (nanowires, nanoparticles or nanorods) can be controlled by adjusting the concentration of AgNO(3) solution and the template pore size. HRTEM images demonstrate extensive Ag nanowires with several to tens of hundreds nanometers in length are deposited along the long axis of mesochannels when the atomic AgNO(3)/Si ratio is 0.090. When the atomic AgNO(3)/Si ratio is 0.068 or 0.11, there is a combination of Ag nanoparticles and nanowires; nanoparticles are mainly formed when the atomic AgNO(3)/Si ratio is higher than 0.14. Further, the catalytic results of the oxidation of styrene show that styrene oxide and benzaldehyde are the main products of the reaction, and the morphology and diversity of Ag in Ag/mesoporous silica composites have an effect on the conversion of styrene and selectivity of styrene oxide.

摘要

介孔硅通道内的 Ag 纳米线是通过双溶剂技术成功合成的,其中正己烷用作疏溶剂以分散介孔硅,而 AgNO3 水溶液用作亲溶剂以填充介孔。通过调节 AgNO3 溶液的浓度和模板孔径,可以控制得到的 Ag(纳米线、纳米颗粒或纳米棒)的形态。HRTEM 图像表明,当原子 AgNO3/Si 比为 0.090 时,大量长度为数纳米到数百纳米的 Ag 纳米线沿着介孔的长轴沉积。当原子 AgNO3/Si 比为 0.068 或 0.11 时,Ag 纳米颗粒和纳米线的组合存在;当原子 AgNO3/Si 比高于 0.14 时,主要形成纳米颗粒。此外,苯乙烯氧化的催化结果表明,苯乙烯氧化物和苯甲醛是反应的主要产物,Ag 在 Ag/介孔硅复合材料中的形态和多样性对苯乙烯的转化率和苯乙烯氧化物的选择性有影响。

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