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多波长激光诱导拉曼光谱分析表面铁铬氧化物。

Multiwavelength Raman Spectroscopic Analysis of Superficial Iron-Chromium Oxides Generated Using Laser Irradiation.

机构信息

1 Instituto Tecnológico de Aguascalientes, Lab. de Optoelectronica, Aguascalientes, México.

2 Centro de Investigaciones en Óptica, Aguascalientes, México.

出版信息

Appl Spectrosc. 2018 Jun;72(6):879-885. doi: 10.1177/0003702818758325. Epub 2018 Feb 14.

Abstract

In order to characterize iron-chromium oxides generated by laser irradiation on the surface of stainless steel plates, an ultraviolet-visible (UV-Vis) near-infrared (NIR) multiwavelength excitation Raman analysis has been performed using both austenitic SS304 and ferritic SS430 stainless steel samples. Raman spectra were obtained using five different excitation wavelengths from blue (455 nm) to NIR (830 nm). These measurements have allowed us to observe and identify four Raman bands, among which two have not been previously observed for iron-chromium oxides, and characterize the existence of different resonant excitation conditions for the different excitation wavelengths. For example, when using 455 nm as excitation wavelength the band at 485 cm did not show up, although that when using 830 nm as excitation wavelength is a clear characteristic band for iron-chromium oxide. In addition, the dependence of the spectra profile with the excitation wavelength for films and microspheres features was observed. This experimental Raman analysis shows the importance of the excitation wavelength for the characterization of metallic oxides with different features.

摘要

为了描述不锈钢板表面激光辐照产生的铁铬氧化物,采用紫外-可见(UV-Vis)近红外(NIR)多波长激发拉曼分析方法,对奥氏体 SS304 和铁素体 SS430 不锈钢样品进行了研究。拉曼光谱是使用从蓝色(455nm)到近红外(830nm)的五个不同激发波长获得的。这些测量使我们能够观察和识别四个拉曼带,其中两个以前未在铁铬氧化物中观察到,并表征了不同激发波长的不同共振激发条件的存在。例如,当使用 455nm 作为激发波长时,485cm 的波段没有出现,而当使用 830nm 作为激发波长时,该波段是铁铬氧化物的特征波段。此外,还观察到了薄膜和微球特征的光谱轮廓随激发波长的依赖性。这种实验拉曼分析表明,激发波长对于具有不同特征的金属氧化物的特性描述非常重要。

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