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Silver-Based SERS Pico-Molar Adenine Sensor

机译:基于银的SERS微微摩尔腺嘌呤传感器

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摘要

Adenine is an important molecule for biomedical and agricultural research and applications. The detection of low concentration adenine molecules is thus desirable. Surface-enhanced Raman scattering (SERS) is a promising label-free detection and fingerprinting technique for molecules of significance. A novel SERS sensor made of clusters of silver nanostructures deposited on copper bumps in valleys of an etched silicon substrate was previously reported to exhibit a low and reproducible detection limit for a 10−11 M neutral adenine aqueous solution. Reflection of laser illumination from the silicon surface surrounding a valley provides additional directions of laser excitation to adenine molecules adsorbing on a silver surface for the generation of enhanced SERS signal strength leading to a low detection limit. This paper further reports a concentration dependent shift of the ring-breathing mode SERS adenine peak towards 760 cm−1 with decreasing concentration and its pH-dependent SERS signal strength. For applications, where the pH value can vary, reproducible detection of 10−12 M adenine in a pH 9 aqueous solution is feasible, making the novel SERS structure a desirable pico-molar adenine sensor.
机译:腺嘌呤是生物医学和农业研究和应用的重要分子。因此需要检测低浓度的腺嘌呤分子。表面增强的拉曼散射(SERS)是一种有前途的无标签检测和用于显着性分子的无指纹识别技术。先前报道了一种新型由沉积在蚀刻硅衬底的铜凸块上的银纳米结构簇的簇传感器,以表现为10-11m中性腺嘌呤水溶液的低且可再现的检测限。激光照射的反射来自山谷的硅表面,为腺嘌呤分子的额外方向提供了吸附在银表面上的腺嘌呤分子,以产生增强的SERs信号强度,导致低检测限。本文进一步报道了响应浓度降低及其pH依赖性SERS信号强度的浓度依次升高升高的齿环峰峰值升高的血液峰值。对于应用的应用,在pH值可以变化的情况下,在pH 9水溶液中可再现的10-12 m腺嘌呤的检测是可行的,使新的SERS结构成为理想的微微摩尔腺嘌呤传感器。

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