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Silicon-Gold-Silica Lamellar Structures for Sample Substrates That Provide an Internal Standard for Raman Microspectroscopy

机译:用于样品基板的硅-金-二氧化硅层状结构,为拉曼光谱提供了内标

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摘要

Crystalline silicon, widely used in the electronic industry, is also a very popular material for calibrating Raman spectrometry instruments. Silicon chips cut or cleaved from commercially available silicon wafers are low-cost monolithic monocrystalline materials that give a strong Raman line at 521 cm~(-1) with almost no background. Such chips have at least one optically flat surface and can be used in place of glass microscope slides as sample substrates that provide an internal calibration standard during Raman measurements. The Raman signal intensity from the silicon can be selectively attenuated by depositing a gold layer on top of the silicon surface with variable thickness such that the far-field silicon Raman signal is comparable with the Raman signal of an investigated material adjacent to this structure. This gold layer provides the additional advantage of increased sensitivity of the spectral signal from the sample due to the reflectivity of the gold surface, which allows forward and backscattered analyte Raman excitation and signal collection. An additional thin encapsulating overlayer of SiO_2 provides a protective and biocompatible surface to facilitate Raman microspectroscopic investigation of live cells.
机译:晶体硅广泛用于电子行业,也是校准拉曼光谱仪的一种非常流行的材料。从市售硅片上切下或切割下来的硅芯片是低成本的单片单晶材料,其在521 cm〜(-1)处产生很强的拉曼线,几乎没有背景。这样的芯片具有至少一个光学平坦的表面,并且可以代替玻璃显微镜载片用作在拉曼测量期间提供内部校准标准的样品衬底。通过在硅表面的顶部以可变厚度沉积金层,可以选择性地衰减来自硅的拉曼信号强度,从而使远场硅拉曼信号与与该结构相邻的被研究材料的拉曼信号相当。由于金表面的反射率,该金层提供了额外的优点,即可以提高样品光谱信号的灵敏度,从而可以实现向前和向后散射的分析物拉曼激发和信号收集。额外的SiO_2薄包封层提供了保护性和生物相容性表面,可促进活细胞的拉曼光谱研究。

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