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Synthesis of hollow gold nanoparticles on the surface of indium tin oxide glass and their application for plasmonic biosensor

机译:氧化铟锡玻璃表面中空金纳米粒子的合成及其在等离子体生物传感器中的应用

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Hollow gold nanoparticles (HGNs) deposited on the surface of transparent indium tin oxide (ITO) glass have been synthesized. The silver nanoparticles were firstly electrodeposited directly on the ITO surface as a template without any organic ligands or surfactants. Then these silver nanoparticles were taken as sacrificial templates and the HGNs were obtained by Galvanic replacement reaction between HAuCl4 solution and silver nanoparticles. The localized surface plasmon resonance (LSPR) peak of HGNs was located at near infrared region of ~800 nm, which was largely red-shifted as compared to silver nanoparticles as a template. Moreover, the refractive index sensitivity of HGNs was enhanced to 277 nm per refractive index unit, which was also much higher than that of silver nanoparticles deposited on ITO substrate. The "clean" surface of HGNs could be further functionalized by special biomolecules and applied to fabrication of LSPR biosensors. This approach provides a potential opportunity as LSPR biosensors for chemical or biological analysis especially on tissue and blood samples.
机译:已经合成了沉积在透明铟锡氧化物(ITO)玻璃表面上的空心金纳米颗粒(HGN)。首先将银纳米颗粒作为模板直接电沉积在ITO表面,没有任何有机配体或表面活性剂。然后将这些银纳米颗粒作为牺牲模板,并通过HAuCl4溶液与银纳米颗粒之间的电流置换反应获得HGN。 HGNs的局部表面等离子体共振(LSPR)峰位于〜800 nm的近红外区域,与以银纳米颗粒为模板的情况相比,它在很大程度上发生了红移。此外,HGNs的折射率灵敏度提高到每个折射率单位277 nm,这也比沉积在ITO衬底上的银纳米颗粒的折射率灵敏度高得多。 HGN的“干净”表面可以通过特殊的生物分子进一步功能化,并应用于LSPR生物传感器的制造。这种方法提供了作为LSPR生物传感器进行化学或生物分析(尤其是组织和血液样本)的潜在机会。

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