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Metal-enhanced fluorescence platforms based on plasmonic ordered copper arrays: Wavelength dependence of quenching and enhancement effects

机译:基于等离子有序铜阵列的金属增强荧光平台:猝灭和增强效应的波长依赖性

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摘要

Ordered arrays of copper nanostructures were fabricated and modified with porphyrin molecules in order to evaluate fluorescence enhancement due to the localized surface plasmon resonance. The nanostructures were prepared by thermally depositing copper on the upper hemispheres of two-dimensional silica colloidal crystals. The wavelength at which the surface plasmon resonance of the nanostructures was generated was tuned to a longer wavelength than the interband transition region of copper (>590 nm) by controlling the diameter of the underlying silica particles. Immobilization of porphyrin monolayers onto the nanostructures was achieved via self-assembly of 16-mercaptohexadecanoic acid, which also suppressed the oxidation of the copper surface. The maximum fluorescence enhancement of porphyrin by a factor of 89.2 was achieved as compared with that on a planar Cu plate (CuP) due to the generation of the surface plasmon resonance. Furthermore, it was found that while the fluorescence from the porphyrin was quenched within the interband transition region, it was efficiently enhanced at longer wavelengths. It was demonstrated that the enhancement induced by the proximity of the fluorophore to the nanostructures was enough to overcome the highly efficient quenching effects of the metal. From these results, it is speculated that the surface plasmon resonance of copper has tremendous potential for practical use as high functional plasmonic sensor and devices.
机译:制备了铜纳米结构的有序阵列,并用卟啉分子对其进行了修饰,以评估由于局部表面等离子体共振引起的荧光增强。通过将铜热沉积在二维二氧化硅胶体晶体的上半球上来制备纳米结构。通过控制下面的二氧化硅颗粒的直径,将产生纳米结构的表面等离子体激元共振的波长调节到比铜的带间跃迁区域更长的波长(> 590 nm)。通过16-巯基十六烷酸的自组装,将卟啉单层固定在纳米结构上,这也抑制了铜表面的氧化。由于产生了表面等离子体激元共振,与平面Cu板(CuP)相比,卟啉的最大荧光增强达到了89.2倍。此外,发现当卟啉的荧光在带间跃迁区域内被淬灭时,在更长的波长处它被有效地增强了。已经证明,由荧光团与纳米结构的接近引起的增强足以克服金属的高效淬灭作用。从这些结果可以推测,铜的表面等离振子共振在作为高性能等离激元传感器和装置的实际应用中具有巨大的潜力。

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