论文标题
高度稳定且可重现的AU纳米棒阵列,用于近红外optofluidic SERS传感器
Highly Stable and Reproducible Au Nanorod Arrays for Near-Infrared Optofluidic SERS sensor
论文作者
论文摘要
表面增强的拉曼光谱(SER)是一种敏感的振动光谱技术,可以实现痕量分子的快速和无损检测。 SERS底物对于SERS应用程序的发展至关重要。通过将SERS底物纳入微流体设备,可以扩展微流体设备的功能,并且可以实现具有强大感应功能的有效的现场痕量分析平台。在本文中,我们报告了使用独特的Au纳米棒阵列(Aunra)在近红外区域的等离子共振频率的快速和敏感的光氟sers设备的制造。高度稳定且可重现的Aunra是通过轻松的动态倾斜角度沉积技术制造的。在注入水溶液BPY后的几秒钟内,观察到典型的4,4-双吡啶(BPY)具有增强峰的光谱。时间课程的测量结果表明,该系统中的SERS非常快速地响应。使用Aunr微流体装置,大约2x10-12的摩尔分子足以产生可检测的SERS信号。这项工作证明了使用配备有独特的贵金属纳米棒阵列的Optofluidic设备快速而敏感的化学传感。
Surface-enhanced Raman spectroscopy (SERS) is a sensitive vibrational spectroscopy technique that can enable fast and non-destructive detection of trace molecules. SERS substrates are critical for the advancement of the SERS application. By incorporating SERS substrates into microfluidic devices, the function of microfluidic devices can be extended, and an efficient on-site trace analysis platform with powerful sensing capabilities can be realized. In this paper, we report the fabrication of a rapid and sensitive optofluidic SERS device using a unique Au nanorod array (AuNRA) with a plasmon resonance frequency in the near IR region. The highly stable and reproducible AuNRA were fabricated by a facile dynamic oblique angle deposition technique. A typical spectrum of 4,4-bipyridine (BPY) with enhanced peaks was observed within a few seconds after the injection of an aqueous solution BPY. Time-course measurements revealed an outstandingly quick response of SERS in this system. Using the AuNR microfluidic device, approximately 2x10-12 mole molecules were enough to produce detectable SERS signals. This work demonstrates rapid and sensitive chemical sensing using an optofluidic device equipped with a unique noble metal nanorod array.