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首页> 外文期刊>Scientific reports. >Determination of the Aspect-ratio Distribution of Gold Nanorods in a Colloidal Solution using UV-visible absorption spectroscopy
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Determination of the Aspect-ratio Distribution of Gold Nanorods in a Colloidal Solution using UV-visible absorption spectroscopy

机译:使用UV可见吸收光谱法测定胶体溶液中金纳米棒的纵横比分布

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摘要

Knowledge of the distribution of the aspect ratios (ARs) in a chemically-synthesized colloidal solution of Gold Nano Rods (GNRs) is an important measure in determining the quality of synthesis, and consequently the performance of the GNRs generated for various applications. In this work, an algorithm has been developed based on the Bellman Principle of Optimality to readily determine the AR distribution of synthesized GNRs in colloidal solutions. This is achieved by theoretically fitting the longitudinal plasmon resonance of GNRs obtained by UV-visible spectroscopy. The AR distribution obtained from the use of the algorithm developed have shown good agreement with those theoretically generated one as well as with the previously reported results. After bench-marking, the algorithm has been applied to determine the mean and standard deviation of the AR distribution of two GNRs solutions synthesized and examined in this work. The comparison with experimentally derived results from the use of expensive Transmission Electron Microscopic images and Dynamic Light Scattering technique shows that the algorithm developed offers a fast and thus potentially cost-effective solution to determine the quality of the synthesized GNRs specifically needed for many potential applications for the advanced sensor systems.
机译:了解在金纳米棒(GNRS)的化学合成的胶体溶液中的纵横比(ARS)的分布是确定合成质量的重要措施,从而实现各种应用产生的GNR的性能。在这项工作中,基于Bellman原理开发了一种算法,以容易地确定胶体解决方案中合成的GNR的AR分布。这是通过理论上拟合通过UV可见光光谱获得的GNR的纵向等离子体共振来实现这一点。从使用该算法的使用获得的AR分布与理论上的那些以及先前报道的结果表明了良好的一致性。在基石标记之后,已经应用了算法以确定在这项工作中合成和检查的两个GNRS解决方案的AR分布的平均值和标准偏差。与使用昂贵的透射电子显微镜图像和动态光散射技术的实验导出结果的比较表明,该算法开发的算法提供了一种快速的,因此可能具有成本效益的解决方案,以确定许多潜在应用的专门所需的合成GNR的质量先进的传感器系统。

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