Depletion-Induced Shape and Size Selection of Gold Nanoparticles

肺表面活性物质 纳米颗粒 胶束 纳米技术 沉积作用 离心 杂质 材料科学 粒径 纳米结构 产量(工程) 微流控 临界胶束浓度 化学工程 化学 色谱法 水溶液 沉积物 有机化学 生物 工程类 古生物学 冶金
作者
Kyoungweon Park,Hilmar Koerner,Richard A. Vaia
出处
期刊:Nano Letters [American Chemical Society]
卷期号:10 (4): 1433-1439 被引量:255
标识
DOI:10.1021/nl100345u
摘要

For nanoparticle-based technologies, efficient and rapid approaches that yield particles of high purity with a specific shape and size are critical to optimize the nanostructure-dependent optical, electrical, and magnetic properties, and not bias conclusions due to the existence of impurities. Notwithstanding the continual improvement of chemical methods for shaped nanoparticle synthesis, byproducts are inevitable. Separation of these impurities may be achieved, albeit inefficiently, through repeated centrifugation steps only when the sedimentation coefficient of the species shows sufficient contrast. We demonstrate a robust and efficient procedure of shape and size selection of Au nanoparticles (NPs) through the formation of reversible flocculates by surfactant micelle induced depletion interaction. Au NP flocculates form at a critical surfactant micelle molar concentration, Cm* where the number of surfactant micelles is sufficient to induce an attractive potential energy between the Au NPs. Since the magnitude of this potential depends on the interparticle contact area of Au NPs, separation is achieved even for the NPs of the same mass with different shape by tuning the surfactant concentration and extracting flocculates from the sediment by centrifugation or gravitational sedimentation. The refined NPs are redispersed by subsequently decreasing the surfactant concentration to reduce the effective attractive potential. These concepts provide a robust method to improve the quality of large scale synthetic approaches of a diverse array of NPs, as well as fine-tune interparticle interactions for directed assembly, both crucial challenges to the continual realization of the broad technological potential of monodispersed NPs.
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