De la Cadena Alejandro, Vernuccio Federico, Talone Benedetta, Bresci Arianna, Ceconello Chiara, Das Subir, Vanna Renzo, Cerullo Giulio, Polli Dario
Dipartimento di Fisica, Politecnico di Milano.
Institute for Photonics and Nanotechnologies (IFN-CNR).
J Vis Exp. 2022 Jul 25(185). doi: 10.3791/63709.
Stimulated Raman scattering (SRS) microscopy is a nonlinear optical technique for label-free chemical imaging. This analytical tool delivers chemical maps at high speed, and high spatial resolution of thin samples by directly interrogating their molecular vibrations. In its standard implementation, SRS microscopy is narrowband and forms images with only a single vibrational frequency at a time. However, this approach not only hinders the chemical specificity of SRS but also neglects the wealth of information encoded within vibrational spectra. These limitations can be overcome by broadband SRS, an implementation capable of extracting a vibrational spectrum per pixel of the image in parallel. This delivers hyperspectral data that, when coupled with chemometric analysis, maximizes the amount of information retrieved from the specimen. Thus, broadband SRS improves the chemical specificity of the system, allowing the quantitative determination of the concentration of the different constituents of a sample. Here, we report a protocol for chemical imaging with broadband SRS microscopy, based on a home-built SRS microscope operating with a custom differential multichannel-lock-in amplifier detection. It discusses the sample preparation, alignment of the SRS apparatus, and chemometric analysis. By acquiring vibrational Raman spectra, the protocol illustrates how to identify different chemical species within a mixture, determining their relative concentrations.
受激拉曼散射(SRS)显微镜是一种用于无标记化学成像的非线性光学技术。这种分析工具通过直接探测薄样品的分子振动,能够以高速和高空间分辨率提供化学图谱。在其标准实现方式中,SRS显微镜是窄带的,并且一次仅以单一振动频率形成图像。然而,这种方法不仅阻碍了SRS的化学特异性,还忽略了振动光谱中编码的大量信息。宽带SRS可以克服这些限制,宽带SRS是一种能够并行提取图像每个像素的振动光谱的实现方式。这提供了高光谱数据,当与化学计量分析相结合时,可以最大限度地从样本中检索到的信息量。因此,宽带SRS提高了系统的化学特异性,允许定量测定样品中不同成分的浓度。在这里,我们报告了一种基于自行搭建的SRS显微镜并使用定制差分多通道锁相放大器检测进行宽带SRS显微镜化学成像的方案。它讨论了样品制备、SRS仪器的校准以及化学计量分析。通过获取振动拉曼光谱,该方案说明了如何识别混合物中的不同化学物质,确定它们的相对浓度。