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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Plasmonic fluorescence enhancement by metal nanostructures: shaping the future of bionanotechnology
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Plasmonic fluorescence enhancement by metal nanostructures: shaping the future of bionanotechnology

机译:金属纳米结构增强等离子体荧光:塑造生物纳米技术的未来

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摘要

This review focuses on metal enhanced fluorescence (MEF) and its current and future applications in biotechnology. The mechanisms of MEF are discussed in terms of the additional radiative and nonradiative decay rates caused by the close proximity of the metal. We then review the current MEF materials and structures that show promise in bioapplications. The use of electromagnetic modelling to predict fluorescent rate enhancement is then considered. We then give particular focus to the recent work carried out in the homogeneous fabrication of metal nanoparticles using colloidal lithography. It is concluded that the use of computational electromagnetic modelling alongside homogeneous fabrication techniques will lead to predictable and controllable MEF, paving the way for increased applications in biotechnology.
机译:这篇综述着重于金属增强荧光(MEF)及其在生物技术中的当前和未来应用。从金属的高度接近引起的附加辐射衰减和非辐射衰减速率方面讨论了MEF的机理。然后,我们回顾了在生物应用中显示出希望的当前MEF材料和结构。然后考虑使用电磁建模来预测荧光速率的提高。然后,我们特别关注使用胶体光刻技术在金属纳米粒子的均匀制造中进行的最新工作。结论是,将计算电磁建模与同质制造技术一起使用将导致可预测和可控制的MEF,从而为在生物技术中增加应用铺平了道路。

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