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SERS detection of low-concentration adenine by a patterned silver structure immersion plated on a silicon nanoporous pillar array

机译:通过浸没在硅纳米多孔柱阵列上的图案化银结构浸没法对低浓度腺嘌呤进行SERS检测

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摘要

A patterned Ag structure was grown on a Si nanoporous pillar array (Si-NPA) by an immersion plating method, and its surface-enhanced Raman scattering (SERS) activity toward adenine was studied. It was shown that two kinds of Ag structures were grown on Si-NPA, a continuous film covering the Si-NPA substrate and composed of Ag nanocrystallites (nc-Ag), and a quasi-regular, interconnected network composed of loop-chains of sub-micron Ag crystallites surrounding the porous Si pillars. The SERS detection of low-concentration adenine solution was performed by using Ag/Si-NPA as active substrates, in which significantly enhanced Raman signals were observed. The SERS enhancement was attributed to the active spacing sites formed between the Ag particles and the nc-Ag which met the optimal size for causing a SERS effect. Based on the measured SERS spectra, the adsorption mode of adenine molecules on Ag particles was deduced. These results indicated that Ag/Si-NPA might be a promising active substrate for SERS detection of low-concentration bio-molecules.
机译:通过浸镀法将图案化的Ag结构生长在Si纳米多孔柱阵列(Si-NPA)上,并研究了其对腺嘌呤的表面增强拉曼散射(SERS)活性。结果表明,两种银结构都生长在Si-NPA上,覆盖Si-NPA衬底并由Ag纳米微晶(nc-Ag)组成的连续薄膜,以及由N-Ag环链组成的准规则互连网络。围绕多孔硅柱的亚微米银微晶。以Ag / Si-NPA为活性底物进行低浓度腺嘌呤溶液的SERS检测,观察到拉曼信号明显增强。 SERS增强归因于在Ag颗粒和nc-Ag之间形成的有效间隔位点,其满足引起SERS效应的最佳尺寸。基于测得的SERS光谱,推导了腺嘌呤分子在Ag颗粒上的吸附模式。这些结果表明,Ag / Si-NPA可能是SERS检测低浓度生物分子的有希望的活性底物。

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