Kitahama Yasutaka, Pancorbo Pablo Martinez, Segawa Hiroki, Marumi Machiko, Xiao Ting-Hui, Hiramatsu Kotaro, Yang William, Goda Keisuke
Department of Chemistry, The University of Tokyo, Tokyo 113-0033, Japan.
LucasLand, Co. Ltd, Tokyo 101-0052, Japan.
Anal Methods. 2023 Feb 23;15(8):1028-1036. doi: 10.1039/d2ay02090d.
The ability to perform sensitive, real-time, , multiplex chemical analysis is indispensable for diverse applications such as human health monitoring, food safety testing, forensic analysis, environmental sensing, and homeland security. Surface-enhanced Raman spectroscopy (SERS) is an effective tool to offer the ability by virtue of its high sensitivity and rapid label-free signal detection as well as the availability of portable Raman spectrometers. Unfortunately, the practical utility of SERS is limited because it generally requires sample collection and preparation, namely, collecting a sample from an object of interest and placing the sample on top of a SERS substrate to perform a SERS measurement. In fact, not all analytes can satisfy this requirement because the sample collection and preparation process may be undesirable, laborious, difficult, dangerous, costly, or time-consuming. Here we introduce "Place & Play SERS" based on an ultrathin, flexible, stretchable, adhesive, biointegratable gold-deposited polyvinyl alcohol (PVA) nanomesh substrate that enables placing the substrate on top of an object of interest and performing a SERS measurement of the object by epi-excitation without the need for touching, destroying, and sampling it. Specifically, we characterized the sensitivity of the gold/PVA nanomesh substrate in the Place & Play SERS measurement scheme and then used the scheme to conduct SERS measurements of both wet and dry objects under nearly real-world conditions. To show the practical utility of Place & Play SERS, we demonstrated two examples of its application: food safety testing and forensic analysis. Our results firmly verified the new measurement scheme of SERS and are expected to extend the potential of SERS by opening up untapped applications of sensitive, real-time, multiplex chemical analysis.
对于人类健康监测、食品安全检测、法医分析、环境传感和国土安全等各种应用而言,具备进行灵敏、实时、多重化学分析的能力是必不可少的。表面增强拉曼光谱(SERS)凭借其高灵敏度、快速的无标记信号检测以及便携式拉曼光谱仪的可用性,成为提供这种能力的有效工具。不幸的是,SERS的实际应用受到限制,因为它通常需要样品采集和制备,即从感兴趣的物体上采集样品并将样品放置在SERS基底上以进行SERS测量。事实上,并非所有分析物都能满足这一要求,因为样品采集和制备过程可能不方便、费力、困难、危险、昂贵或耗时。在此,我们介绍基于超薄、柔性、可拉伸、粘性、生物可整合的金沉积聚乙烯醇(PVA)纳米网基底的“即贴即用SERS”,它能够将基底放置在感兴趣的物体上,并通过落射激发对物体进行SERS测量,而无需接触、破坏和采样。具体而言,我们表征了即贴即用SERS测量方案中金/PVA纳米网基底的灵敏度,然后使用该方案在接近实际条件下对湿物体和干物体进行SERS测量。为了展示即贴即用SERS的实际应用价值,我们展示了其应用的两个实例:食品安全检测和法医分析。我们的结果有力地验证了SERS的新测量方案,并有望通过开拓灵敏、实时、多重化学分析的未开发应用来扩展SERS的潜力。