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Self-formed silver nanoparticles on freestanding silicon nanowire arrays featuring SERS performances

机译:独立式硅纳米线阵列的自成型银纳米颗粒,具有SERS表演

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Herein, the universal luminescence characteristics of porous Si nanowire arrays were exploited using a wide range of doping types and concentrations; we found that the dual-band photoluminescence intensities were correlated with the formation rates of Si nanowires with porous features; however, these intensities exhibited no evident dependence on the doping conditions. Furthermore, we demonstrated a facile and reliable transfer method implementing the freestanding Si nanowire arrays while maintaining the robust photoluminescence behaviors under bending conditions. The fabrication protocol, involving lateral etching locally at the nanowire ends, enabled the controlled formation of uniform and large-area transferred nanowires with vertical regularity. Without the additional deposition of Ag nanoparticles, these transferred Si nanowire films inherently possessed SERS sensing capability with a relative enhancement factor over 1.8 times that of the Si nanowires with electroless-deposited Ag nanoparticles, which could practically emerge as a functional design for the integration of practical biochip devices.
机译:在此,使用各种掺杂类型和浓度利用多孔Si纳米线阵列的普遍发光特性;我们发现双带光致发光强度与具有多孔特征的Si纳米线的形成速率相关;然而,这些强度对掺杂条件没有明显的依赖性。此外,我们证明了一种容易且可靠的转移方法,实现了独立式Si纳米线阵列,同时在弯曲条件下保持稳健的光致发光行为。制造方案涉及在纳米线端部局部局部蚀刻的横向蚀刻,使得具有垂直规律的均匀和大面积转移纳米线的控制形成。如果没有Ag纳米颗粒的额外沉积,则这些转移的Si纳米线膜固有地具有SERS感测能力,其具有具有电镀沉积的AG纳米颗粒的Si纳米线的相对增强因子超过1.8倍,这可以实际上作为整合的功能设计。实用的Biochip器件。

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