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首页> 外文期刊>Journal of Modern Physics >Synthesis and Biomedical Application of SiO2/Au Nanofluid Based on Laser-Induced Surface Plasmon Resonance Thermal Effect
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Synthesis and Biomedical Application of SiO2/Au Nanofluid Based on Laser-Induced Surface Plasmon Resonance Thermal Effect

机译:基于激光诱导的表面等离子体共振热效应的SiO2 / Au纳米流体的合成及生物医学应用

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摘要

We described the synthesis of Au coated SiO2 nanoshells linked with NH2 biomolecular ligands using a simple wet chemical method with a particular application for laser tissue soldering. Tunable nanoshells were prepared by using different gold colloidal concentrations. The nanoshells are characterized by UV-vis spectroscopy, FTIR, XRD and AFM. The FTIR results confirmed the functionalized surfaces of silica nanoparticles with NH2 terminal groups. A broad absorption was observed between 470 - 600 nm with a maximum range between 530 - 560 nm. Based on the XRD results three main peaks of Au (111), (200) and (220) were identified. In addition, AFM results showed that the diameter of silica core was between 90 - 110 nm with gold shell thickness between 10 - 30 nm. A possible tissue soldering using gold nanoshells and laser-induced thermal effect based on surface plasmon resonance is demonstrated. In our case this corresponds to 90?C (i.e. below vaporization) using the higher gold concentration (2 ml) at 60 W·cm–2.
机译:我们描述了使用简单的湿化学方法,特别是激光组织焊接的特殊应用,合成了与NH2生物分子配体连接的Au涂层SiO2纳米壳。通过使用不同的金胶体浓度制备可调谐的纳米壳。纳米壳的特征在于紫外可见光谱,FTIR,XRD和AFM。 FTIR结果证实了具有NH2端基的二氧化硅纳米粒子的功能化表面。在470-600nm之间观察到宽吸收,最大范围在530-560nm之间。根据XRD结果,确定了Au(111),(200)和(220)的三个主要峰。此外,原子力显微镜的结果表明,二氧化硅核的直径在90-110 nm之间,金壳的厚度在10-30 nm之间。演示了使用金纳米壳和基于表面等离振子共振的激光诱导的热效应的可能的组织焊接。在我们的情况下,在60 W·cm-2下使用较高的金浓度(2 ml),这相当于90℃(即低于蒸发)。

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