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Precisely tuning the longitudinal localized surface plasmon resonance of gold nanorods via additive-regulated overgrowth

机译:通过附加调节过度生长精确调整金纳米棒的纵向局部表面等离子体谐振

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Gold nanorods (GNRs) with desired longitudinal localized surface plasmon resonance (LLSPR) and strong scattering intensity are important for extending their practical applications in bioimaging and sensing. Herein, a simple additive (HCl and Na _(2) S)-regulated overgrowth approach has been proposed for preparing GNRs with tunable LLSPR. In this approach, HCl is used to slow down the growth reaction rate by changing chemical equilibrium, while Na _(2) S is utilized to halt the reaction when LLSPR is reaching the expected wavelength under monitoring by a UV-Vis spectrometer. Under optimal conditions, GNRs with an LLSPR range from 850 to 650 nm could be facilely prepared with a high precision of 3 nm deviation. The TEM images reveal that GNRs have high monodispersity, displaying an increase in both length and diameter but a decrease in the aspect ratio. With the increase in size, the produced GNRs show enhanced scattering intensity and are applicable for single nanoparticle imaging due to the enlarged absorption and scattering cross-section and improved matching efficiency toward the CCD response.
机译:具有所需纵向局部表面等离子体共振(LLSPR)和强散射强度的金纳米棒(GNR)对于在生物分析和感测中延长其实际应用是重要的。在此,已经提出了一种简单的添加剂(HCl和Na _(2)S) - 用于制备具有可调谐LLSPR的GNRS的-Regulated过度生长方法。在这种方法中,HCl通过改变化学平衡来减慢生长反应速率,而当LLSPR在通过UV-Vis光谱仪监测下达到预期波长时,利用Na _(2)S停止反应。在最佳条件下,具有850至650nm的LLSPR范围的GNR可以用高精度为3nm偏差。 TEM图像揭示了GNR具有高的单一性,显示长度和直径的增加,但纵横比减小。随着尺寸的增加,所生产的GNRS显示出增强的散射强度,并且由于扩大和散射横截面和改善了CCD响应的匹配效率,适用于单纳米粒子成像。

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