首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Multispectroscopic (FTIR, XPS, and TOFMS-TPD) Investigation of the Core-Shell Bonding in Sonochemically Prepared Aluminum Nanoparticles Capped with Oleic Acid
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Multispectroscopic (FTIR, XPS, and TOFMS-TPD) Investigation of the Core-Shell Bonding in Sonochemically Prepared Aluminum Nanoparticles Capped with Oleic Acid

机译:用多光谱法(FTIR,XPS和TOFMS-TPD)研究用油酸包覆的声化学制备的铝纳米颗粒的核-壳键合

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摘要

Organically capped metal nanoparticles are an attractive alternative to more conventional oxide-passivated materials, due to the lower reaction temperatures and the possibility of tuning the organic coating. Sonochemical methods have been used to produce small (~5 nm average size) air-stable aluminum nanoparticles capped with oleic acid. In order to understand the nature of the metal-organic bonding in the nanoparticles, we have used FTIR, XPS, and TOFMS-TPD techniques to study the organic passivation layer and its desorption at elevated temperatures. In the present case we find that the organic layer appears to be attached via Al-O-C bonds with the C atom formerly involved in the carboxylic acid functional group.
机译:由于较低的反应温度和调整有机涂层的可能性,有机封端的金属纳米粒子是更常规的氧化物钝化材料的有吸引力的替代品。声化学方法已用于生产用油酸封端的小(平均粒径约5 nm)的空气稳定铝纳米颗粒。为了了解纳米粒子中金属-有机键的性质,我们使用了FTIR,XPS和TOFMS-TPD技术研究了有机钝化层及其在高温下的脱附。在当前情况下,我们发现有机层似乎通过Al-O-C键与先前参与羧酸官能团的C原子相连。

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