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Near-Infrared Dye Immobilized in Porous Silica Layer on Gold Nanorod and Its Fluorescence Enhancement by Strengthened Electromagnetic Field Based on Surface Plasmon Resonance

机译:基于表面等离子体共振的加强电磁场固定在金纳米棒上固定在多孔二氧化硅层中的近红外染料及其荧光增强

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摘要

We report immobilizing Nile Blue A, which is a cationic fluorescent dye emitting in the near-infrared region, in the porous silica layer on gold nanorod and its fluorescence enhancement by strengthened electromagnetic field based on surface plasmon resonance. The effect of the spacer corresponding to the silica layer on the metal-enhanced fluorescence effect is also discussed in detail. Hollow silica nanorod was in advance prepared, and then the silica layer was partly etched to increase the porosity for the improvement of the mass transfer. Subsequently, gold nanorod was fabricated in the restricted space of hollow silica nanorod. Finally, Nile Blue A was physically immobilized in the porous silica layer on gold nanorod through electrostatic interactions. The fluorescence enhancement of Nile Blue A based on surface plasmon resonance was semi-quantified by comparative experiments using hollow silica nanorod, which is exactly the same structure except for gold as silica-coated gold nanorod. Since our results demonstrated that the porosity degree of the silica layer significantly affected the fluorescence enhancement of Nile Blue A, it is hopeful that our design concept, distinct from the conventional one, can lay a foundation for further development of near-infrared fluorescence nanomaterials.
机译:我们报告了固定的尼罗蓝色A,其是在近红外区域发射的阳离子荧光染料,在金纳米棒上的多孔二氧化硅层及其基于表面等离子体共振的电磁场的荧光增强。还详细讨论了对应于二氧化硅层对金属增强荧光效应的施加的影响。预先制备中空二氧化硅纳米棒,然后部分地蚀刻二氧化硅层以增加孔隙率以改善传质。随后,在空心硅纳米棒的限制空间中制造金纳米棒。最后,通过静电相互作用,尼罗蓝色A在金纳米棒上物理固定在多孔二氧化硅层上。基于表面等离子体共振的尼罗蓝色A的荧光增强通过使用中空硅纳米棒的比较实验半量化,其与金刚的金色除了金色涂覆的金纳米棒之外是完全相同的结构。由于我们的结果表明,二氧化硅层的孔隙度影响尼罗蓝A的荧光增强,希望我们的设计理念与传统的设计概念不同,可以为近红外荧光纳米材料进行进一步发展的基础。

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