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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Aqueous-organic phase-transfer of highly stable gold, silver, and platinum nanoparticles and new route for fabrication of gold nanofilms at the oil/water interface and on solid supports
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Aqueous-organic phase-transfer of highly stable gold, silver, and platinum nanoparticles and new route for fabrication of gold nanofilms at the oil/water interface and on solid supports

机译:高度稳定的金,银和铂纳米颗粒的水-有机相转移以及在油/水界面和固体载体上制备金纳米膜的新途径

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摘要

A simple but effective aqueous-organic phase-transfer method for gold, silver, and platinum nanoparticles was developed on the basis of the decrease of the PVP's solubility in water with the temperature increase. The present method is superior in the transfer efficiency of highly stable nanoparticles to the common phase-transfer methods. The gold, silver, and platinum nanoparticles transferred to the 1-butanol phase dispersed well, especially silver and platinum particles almost kept the previous particle size. Electrochemical synthesis of gold nanoparticles in an oil-water system was achieved by controlling the reaction temperature at 80 degrees C, which provides great conveniences for collecting metal particles at the oil/water interface and especially for fabricating dense metal nanoparticle films. A technique to fabricate gold nanofilms on solid supports was also established. The shapes and sizes of gold nanoparticles as the building blocks may be controllable through changing reaction conditions.
机译:随着温度升高,PVP在水中的溶解度降低,开发了一种简单而有效的金,银和铂纳米粒子的水-有机相转移方法。本方法在高度稳定的纳米颗粒的转移效率方面优于普通的相转移方法。转移到1-丁醇相的金,银和铂纳米粒子分散得很好,尤其是银和铂粒子几乎保持了以前的粒径。通过将反应温度控制在80摄氏度,可以在油水系统中进行金纳米粒子的电化学合成,这为在油/水界面收集金属粒子,特别是制备致密的金属纳米粒子膜提供了极大的便利。还建立了在固体载体上制备金纳米膜的技术。通过改变反应条件可以控制作为构建基的金纳米颗粒的形状和大小。

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