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Remarkable SERS Detection by Hybrid Cu2O/Ag Nanospheres

机译:杂交Cu2O / Ag纳米球的显着SERs检测

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Cu_(2)O nanospheres (NSs) were synthesized by modifying the glucose reduction method. Based on this method, Cu_(2)O/Au (Ag) NSs were further prepared by in situ reduction of HAuCl_(4) (via electron beam evaporation of Ag). With Rhodamine 6G (R6G) as probe, the surface-enhanced Raman scattering (SERS) characteristics of the three samples were systematically studied. The experiment results showed that the enhancement factor (EF) of Cu_(2)O/Au (Ag) NSs as 1.25 × 10~(8) (2.74 × 10~(9)) and the ultralow detection limit (LOD) as 8.07 × 10~(–12) (1.13 × 10~(–13)) M for R6G. The excellent performance of SERS may be due to the charge transfer (CT) between metal–semiconductor (MS) molecules and the strong electromagnetic field (E-field) of each hot spot. In addition, discrete dipole approximation (DDA) simulations were performed to simulate the E-field enhancement of the Cu_(2)O and Cu_(2)O/Au (Ag) NSs in a three-dimensional (3D) configuration. These further supported that the high SERS performance for R6G is because of the powerful E-field coupling between neighboring Au (Ag) NPs and the surface plasmon resonance (SPR) effect. The Cu_(2)O/Ag NSs have potential in applications such as biomedicine, food safety, and environmental monitoring because of their high sensitivity and good reproducibility.
机译:通过改变葡萄糖还原方法合成Cu_(2)αα(NSS)。基于该方法,通过原位还原HauCl_(4)(通过Ag的电子束蒸发)进一步制备Cu_(2)O / Au(Ag)NSS。用罗丹明6G(R6G)作为探头,系统研究了三个样品的表面增强拉曼散射(SERS)特征。实验结果表明,Cu_(2)O / Au(Ag)NSS的增强因子(EF)为1.25×10〜(8)(2.74×10〜(9))和超级检测限(LOD)为8.07 ×10〜(-12)(1.13×10〜(-13)m)对于R6G。 SERS的优异性能可能是由于每个热点的金属半导体(MS)分子和强电磁场(E-OI)之间的电荷转移(CT)。另外,执行离散的偶极逼近(DDA)模拟以模拟三维(3D)配置中CU_(2)O和CU_(2)O / AU(AG)NSS的E场增强。这些进一步支持R6G的高SERs性能是因为相邻AU(AG)NP和表面等离子体谐振(SPR)效应之间的强大的E场耦合。 Cu_(2)O / Ag NSS具有生物医学,食品安全和环境监测等应用的潜力,因为它们具有高灵敏度和良好的再现性。

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