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Size-Dependent Surface Enhanced Fluorescence of Gold Nanorod: Enhancement or Quenching

机译:金纳米棒的尺寸依赖性表面增强荧光:增强或淬灭

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摘要

The size-dependent surface enhanced fluorescence (SEF) of a gold nanorod (GNR) on a vicinal molecule is studied systematically by using the multiple multipole method. The enhancement factors (EFs) of GNRs of different sizes (radius: a07 or 10 nm) with the same aspect ratio (AR), e.g., 3 or 3.43, on the fluorescence of a molecule at different locations with various orientations excited at the longitudinal surface plasmon resonance (SPR) of a GNR are discussed in detail. The numerical results show that the EF of a GNR is sensitive not only to the molecular location and orientation but also to the size. The effective EF (EEF), the average of the EF over all possible orientations at a specific location, is further calculated. According to the EEF, the proximity of the end-cap of a GNR is a strong enhancing zone, while the waist area of the GNR is a relatively weak zone. Moreover, for the same AR, the EEF of a bigger GNR (a≥10 nm) is larger than that of a smaller one. Hence, the SEF performance of a bigger GNR on the fluorescence can be a very strong enhancement if the molecule is close to the end-cup excited at the longitudinal SPR. On the contrary, the performance of a smaller GNR could be a quenching if the molecule is near the waist. In addition, the Stokes-shift effect of fluorescence on the EF is also discussed.
机译:通过使用多多极方法系统研究了邻近分子上金纳米棒(GNR)的尺寸依赖性表面增强荧光(SEF)。具有相同纵横比(AR)(例如3或3.43)的不同大小(半径:a07或10 nm)的GNR的增强因子(EFs)对分子在不同位置的荧光具有不同的纵向激发详细讨论了GNR的表面等离振子共振(SPR)。数值结果表明,GNR的EF不仅对分子位置和方向敏感,而且对大小敏感。有效EF(EEF),即特定位置所有可能方向上的EF的平均值,将被进一步计算。根据EEF,GNR的端盖附近是一个强增强区,而GNR的腰部区域是一个相对较弱的区。此外,对于相同的AR,较大的GNR(a≥10nm)的EEF大于较小的GNR。因此,如果分子接近在纵向SPR激发的端杯,则较大的GNR在荧光上的SEF性能可以得到非常强的增强。相反,如果分子靠近腰部,则较小的GNR的性能可能会令人猝灭。另外,还讨论了荧光对EF的斯托克斯位移效应。

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