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Experimental and theoretical photoluminescence studies in nucleic acid assembled gold-upconverting nanoparticle clusters

机译:实验和理论光致发光研究核酸组装gold-upconverting纳米簇

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摘要

Combinations of rare earth doped upconverting nanoparticles (UCNPs) and gold nanostructures are sought as nanoscale theranostics due to their ability to convert near infrared (NIR) photons into visible light and heat, respectively. However, because the large NIR absorption cross-section of the gold coupled with their thermo-optical properties can significantly hamper the photoluminescence of UCNPs, methods to optimize the ratio of gold nanostructures to UCNPs must be developed and studied. We demonstrate here nucleic acid assembly methods to conjugate spherical gold nanoparticles (AuNPs) and gold nanostars (AuNSs) to silica-coated UCNPs and probe the effect on photoluminescence. These studies showed that while UCNP fluorescence enhancement was observed from the AuNPs conjugated UCNPs, AuNSs tended to quench fluorescence. However, conjugating lower ratios of AuNSs to UCNPs led to reduced quenching. Simulation studies both confirmed the experimental results and demonstrated that the orientation and distance of the UCNP with respect to the core and arms of the gold nanostructures played a significant role in PL. In addition, the AuNS-UCNP assemblies were able to cause rapid gains in temperature of the surrounding medium enabling their potential use as a photoimaging-photodynamic-photothermal agent.
机译:稀土掺杂upconverting的组合纳米颗粒(UCNPs)和金纳米结构寻求纳米开展由于他们近红外(NIR)光子转换的能力分别为可见的光和热。然而,由于大型近红外光谱吸收加上其横截面的黄金thermo-optical属性可以显著阻碍UCNPs光致发光的方法优化金纳米结构的比例UCNPs必须开发和研究。证明这里核酸组装方法共轭球形金纳米粒子(AuNPs)和黄金nanostars (AuNSs) silica-coated UCNPs和探测光致发光的影响。研究显示,尽管UCNP荧光从AuNPs增强观察共轭UCNPs AuNSs倾向于淬火荧光。AuNSs UCNPs导致减少淬火。仿真研究证实了实验结果证明了方向和距离UCNP的尊重金纳米结构的核心和武器在PL发挥了重要的作用。此外,AuNS-UCNP组件能够引起快速周围介质的温度使他们的潜在用途photoimaging-photodynamic-photothermal代理。

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