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Optimizing the electric field around solid and core-shell alloy nanostructures for near-field applications

机译:优化固体和周围的电场核壳合金纳米结构近场应用程序

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摘要

The near electric field enhancement around plasmonic nanoparticles (NPs) is very important for applications like surface enhanced spectroscopies, plasmonic dye-sensitized solar cells and plasmon-enhanced OLEDs, where the interactions occur close to the surface of the NPs. In this work we have calculated the near-field enhancement around solid and core-shell alloy NPs as a function of their geometrical parameters and composition. We have found that the field enhancement is lower in the AuxAg1-x alloys with respect to pure Ag NPs, but it is still high enough for most near-field applications. The higher order modes have a stronger influence over the near-field due to a sharper spatial decay of the near electric field with the increase of the order of multipolar modes. For the same reason, in AuxAg1-x@SiO2 core-shell structures, the quadrupolar mode is dominant around the core, whereas the dipolar mode is predominant around the shell. The LSPR modes can have different behaviours in the near-and the far-field, particularly for larger particles with high Ag contents, which indicates that caution must be exercised for designing plasmonic nanostructures for near-field applications, as the variations of the LSPR in the near-field cannot be inferred from those observed in the far-field. These results have important implications for the application of gold-silver alloy NPs in surface enhanced spectroscopies and in the fabrication of plasmon-based optoelectronic devices, like dye-sensitized solar cells and plasmon-enhanced organic light-emitting diodes.
机译:附近的电场增强电浆纳米颗粒(NPs)是非常重要的应用表面增强色素增感太阳能光谱,电浆细胞和plasmon-enhanced oled,交互发生接近的表面NPs。固体和近场增强核壳合金NPs作为他们的函数几何参数和组成。发现场增强的低AuxAg1-x合金与纯Ag NPs,但对于大多数近场也足够高应用程序。近场由于强大的影响力尖锐的空间衰变附近电场随着订单的增加多极模式。核壳结构,四极模式占主导地位的核心,而偶极模式是主要的壳。可以有不同的行为模式近,远场,特别是对于较大粒子具有高Ag)内容,这表明这对设计必须小心谨慎电浆纳米结构的近场应用程序,LSPR的变化近场不能从这些推断在远场观测。应用程序的重要意义金银合金NPs在表面增强光谱学和制造的plasmon-based光电设备太阳能电池和plasmon-enhanced涂料有机发光二极管。

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