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首页> 外文期刊>Plasmonics >Well Controlling of Plasmonic Features of Gold Nanoparticles on Macro Porous Silicon Substrate by HF Acid Concentration
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Well Controlling of Plasmonic Features of Gold Nanoparticles on Macro Porous Silicon Substrate by HF Acid Concentration

机译:通过HF酸浓度控制金纳米粒子型金纳米颗粒的等离子体特征

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In this work, we fabricated an efficient macroporous silicon/gold nanoparticles (macro psi/AuNPs) hybrid structure and how well controlling of plasmonic features on macro psi/AuNPs employs them for highly sensitive detection of the very low concentration of cyanine (Cy) dyes molecules. Macro-PSi was synthesized on n-type Si wafer with 3-10 Omega.cm resistivity and 100 orientation using Photo Electro Chemical Etching (PECE) process with630 nm illumination wavelength and 30 mW/cm(2) illumination intensity. The macroPSi /AuNPs hybrid structure substrates were prepared by simple and quick dipping process of macroPSi in tetrachloroauric gold solution HAuCl4 with different concentrations of (10(-2) M, 10(-2) M diluted in 2.9 M of HF, 5 x 10(-3) M, and 5 x 10(-3) M diluted in 2.9 M of HF). Efficient surface-enhanced Raman scattering (SERS) signals was obtained from macroPSi/AuNPs substrates for Cy dye concentration of about 10(-6) and 10(-10) M. The detection method is dependent on a nanoparticles sizes process through controlling the concentration in a HAuCl4 solution. Higher SERS signal was found for sample with lower salt concentration of 5 x 10(-3) M diluted in HF. The enhancement factors (EF) of Raman's signal increased four orders of magnitude by diluting the salt concentration. The values of EF in the range of 0.8 x 10(3-) 0.72 x 10(7) were obtained by controlling the salt concentration from 10(-2) to 5 x 10(-3) diluted in HF acid.
机译:在这项工作中,我们制造了一种高效的大孔硅/金纳米粒子(宏PSI / AUNP)杂种结构以及控制宏PSI / AUNP上的等离子体特征的控制如何利用它们用于高度敏感的氰化浓度(Cy)染料的浓度分子。在N型Si晶片上用3-10ωCM电阻率合成宏观PSI,使用光电化学蚀刻(PECE)工艺100个取向,具有630nm照明波长和30mW / cm(2)照明强度。通过在2.9μmHF,5×10中稀释的不同浓度(10(-2)m,10(-2)米的四氯硼金溶液Haucl4中的Macropsi的简单和快速浸渍乳胶杂交结构衬底制备。 (-3)m,5×10(-3)米,在2.9米的HF中稀释)。从Macropsi / AuNP底物中获得高效的表面增强拉曼散射(SERS)信号,用于染料浓度为约10(-6)和10(-10)米。检测方法通过控制浓度来取决于纳米粒子尺寸的过程在haucl4解决方案中。发现较高的SERS信号对于在HF中稀释的较低盐浓度的盐浓度的样品。拉曼信号的增强因子(EF)通过稀释盐浓度来增加四个数量级。通过在HF酸中稀释的10(-2)至5×10(-3)的盐浓度,获得0.8×10(3-)0.72×10(7)的eF的值。

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