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Surface-enhanced Raman scattering (SERS) studies on silver nanorod substrates

机译:银纳米棒基底上的表面增强拉曼散射(SERS)研究

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摘要

We report the development of a novel SERS substrate prepared by the growth of silver nanorods directly on the surface of glass without using any linker molecule. Silver nanorods were prepared according to seed-mediated growth approach using cetyl-trimethyl ammonium bromide (CTAB). Nanorod preparation conditions were first optimized in solution phase and the plasmon absorption of the formed nanocrys-tals were monitored by UV-vis spectrometry. The most significant red shift in the longitudinal plasmon resonance absorption of silver nanostructures was maximized in order to achieve the highest electromagnetic enhancement in Raman measurements. The images of the formed nanorods were recorded using field emission scanning electron microscopy (FE-SEM). These optimized conditions were adopted for the growth of nanorods on the surface of the glass substrate. Sol-gel-coated glass slides were used in order to increase the porosity on the surface for an effective seeding process. The SERS performances of the nanorod covered surfaces were evaluated by the signals of crystal violet (CV), brilliant cresyl blue (BCB) and benzoic acid (BA). Some modifications, for the enhancement of the SERS signals, such as the increase in the AgNO_3 concentration in the growth solution and the addition of hydrocarbons to the growth solution were investigated. The high quality of the spectra obtained for the model compounds demonstrated the efficiency of the prepared substrate for the SERS enhancement and its potential as a SERS detection probe for chemical and biological analysis.
机译:我们报道了通过不使用任何连接分子直接在玻璃表面上生长银纳米棒而制备的新型SERS基板的开发。根据种子介导的生长方法,使用十六烷基三甲基溴化铵(CTAB)制备银纳米棒。首先在溶液相中优化纳米棒的制备条件,并通过紫外可见光谱法监测所形成的纳米晶体的等离子体吸收。银纳米结构的纵向等离振子共振吸收中最显着的红移被最大化,以实现拉曼测量中最高的电磁增强。使用场发射扫描电子显微镜(FE-SEM)记录形成的纳米棒的图像。这些优化条件被采用来在玻璃基板表面上生长纳米棒。为了提高表面接种效率,使用了溶胶-凝胶涂布的载玻片,以增加表面的孔隙率。纳米棒覆盖的表面的SERS性能通过结晶紫(CV),亮甲酚蓝(BCB)和苯甲酸(BA)的信号进行评估。为了增强SERS信号,进行了一些修改,例如增加生长溶液中AgNO_3的浓度以及向生长溶液中添加碳氢化合物。从模型化合物获得的高质量质谱图证明了制备的底物用于增强SERS的效率以及其作为SERS检测探针进行化学和生物学分析的潜力。

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