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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Metallic Copper Nanoparticle Synthesis in AOT Reverse Micelles in Compressed Propane and Supercritical Ethane Solutions
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Metallic Copper Nanoparticle Synthesis in AOT Reverse Micelles in Compressed Propane and Supercritical Ethane Solutions

机译:压缩丙烷和超临界乙烷溶液中AOT反向胶束中的金属铜纳米粒子合成

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摘要

In this articles, we present the formatin of nanosized metallic copper particles synthesized in sodium bis-(2-ethylhexyl) sulfosuccinate (AOT) reverse micelles in compressed propane and supercritical fluid (SCF) ethane solutions. Specifically, copper particles (<20 nm) were produced by the reduction of copper ions from copper bis(2-ehtylhexyl) sulfosuccinate, Cu(AOT)_2, incorporated within AOT reverse micelles dispersed in compressed propane and SCF ethane solvent along with small amounts of isooctane cosolvent. The effects of the compressed solvents on the particle characteristics and particle growth rate ar discussed and comparisons are made with growth rates in normal liquid solvents. The metallic nanoparticles wer characterized using both in situ UV-vis spectroscopy and transmission electron microscopy. The UV-vis spectrum of these nanosized copper particles is sensitive to particle size, and hence time-resolved spectral measurements were used to monitor the particle growth process. The particle growth rate in AOT reverse micelles inSCF ethane is faster than in either of the two normal liquid solvents partly because of intermediate physical and transport properties of the SCF solvent (e.g. increased mass transfer, decreased viscosity and density, lower dielectric constant), which results in increased collision frequencies and exchange rates between micelles.
机译:在本文中,我们介绍了在压缩丙烷和超临界流体(SCF)乙烷溶液中的双-(2-乙基己基)磺基琥珀酸钠(AOT)反胶束中合成的纳米级金属铜颗粒的甲氰胺。具体而言,通过将双(2-乙基己基)磺基琥珀酸铜(Cu(AOT)_2)还原成铜颗粒(<20 nm),该铜离子与少量分散在压缩丙烷和SCF乙烷溶剂中的AOT反胶团结合在一起异辛烷助溶剂。讨论了压缩溶剂对颗粒特性和颗粒生长速率的影响,并与普通液体溶剂中的生长速率进行了比较。可以使用原位紫外-可见光谱和透射电子显微镜对金属纳米颗粒进行表征。这些纳米级铜粒子的紫外可见光谱对粒径敏感,因此使用时间分辨光谱测量来监测粒子的生长过程。 SCF乙烷中AOT反胶束的颗粒生长速度快于两种普通液体溶剂中的任何一种,部分原因是SCF溶剂具有中等的物理和传输特性(例如,传质增加,粘度和密度降低,介电常数降低),这导致胶束之间的碰撞频率和交换速率增加。

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