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Fine-tuning of gold nanorod dimensions and plasmonic properties using the Hofmeister effects

机译:利用Hofmeister效应对金纳米棒的尺寸和等离激元性质进行微调

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Gold nanorods (Au NRs) present unique optical and electronic properties that depend on their morphology. Their applications in sensing and therapeutics require easy synthesis with precise control over their dimensions. Here, we report a method for the synthesis of highly pure and monodisperse Au NRs with fine-tuneable dimensions and longitudinal localised surface plasmon resonance by addition of Hofmeister salts into the growth medium. The control of Au NR formation relies on the double interaction between salt-gold and salt-surfactant (cetyl trimethylammonium bromide, CTAB). With the addition of Hofmeister salts (i.e. NaNO3, NaBr, NaCl and NaHSO4) we can fine-tune the aspect ratio of Au NRs in the range of 3.3 to 4.8 with a precision of 0.1 and the longitudinal absorption band from 777 to 960 nm. In addition, we have studied the physical changes in the CTAB micelles induced by the salts using rheology, electron microscopy and light-scattering techniques. We report for the first time cryo-electron microscopy imaging of the micelles under Au NR growth conditions. With the comprehensive characterization of CTAB micelles in the growth solution, this study provides a deeper understanding of the anisotropic growth of metallic crystals.
机译:金纳米棒(Au NRs)具有独特的光学和电子特性,这取决于它们的形态。它们在传感和治疗中的应用要求易于合成,并对其尺寸进行精确控制。在这里,我们报告了一种通过向生长培养基中添加霍夫迈斯特盐来合成具有可微调尺寸和纵向局部表面等离振子共振的高纯度和单分散金NR的方法。 Au NR形成的控制依赖于盐金和盐表面活性剂(十六烷基三甲基溴化铵,CTAB)之间的双重相互作用。通过添加霍夫迈斯特盐(即NaNO3,NaBr,NaCl和NaHSO4),我们可以将Au NR的长径比微调为3.3至4.8,精度为0.1,纵向吸收带为777至960 nm。此外,我们使用流变学,电子显微镜和光散射技术研究了由盐引起的CTAB胶束的物理变化。我们首次报告了金纳米管生长条件下的胶束的冷冻电子显微镜成像。通过对生长溶液中CTAB胶束的全面表征,本研究对金属晶体的各向异性生长有了更深入的了解。

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