Choquette Steven J, Etz Edgar S, Hurst Wilbur S, Blackburn Douglas H, Leigh Stefan D
Chemical Science and Technology Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899-8394, USA.
Appl Spectrosc. 2007 Feb;61(2):117-29. doi: 10.1366/000370207779947585.
Standard Reference Materials SRMs 2241 through 2243 are certified spectroscopic standards intended for the correction of the relative intensity of Raman spectra obtained with instruments employing laser excitation wavelengths of 785 nm, 532 nm, or 488 nm/514.5 nm. These SRMs each consist of an optical glass that emits a broadband luminescence spectrum when illuminated with the Raman excitation laser. The shape of the luminescence spectrum is described by a polynomial expression that relates the relative spectral intensity to the Raman shift with units in wavenumber (cm(-1)). This polynomial, together with a measurement of the luminescence spectrum of the standard, can be used to determine the spectral intensity-response correction, which is unique to each Raman system. The resulting instrument intensity-response correction may then be used to obtain Raman spectra that are corrected for a number of, but not all, instrument-dependent artifacts. Peak area ratios of the intensity-corrected Raman spectrum of cyclohexane are presented as an example of a methodology to validate the spectral intensity calibration process and to illustrate variations that can occur in this measurement.
标准参考物质SRM 2241至2243是经过认证的光谱标准物质,旨在校正使用785 nm、532 nm或488 nm/514.5 nm激光激发波长的仪器所获得的拉曼光谱的相对强度。这些标准参考物质均由一种光学玻璃组成,当用拉曼激发激光照射时,该光学玻璃会发出宽带发光光谱。发光光谱的形状由一个多项式表达式描述,该表达式将相对光谱强度与以波数(cm⁻¹)为单位的拉曼位移相关联。这个多项式,连同标准物质发光光谱的测量值,可用于确定光谱强度响应校正,这对于每个拉曼系统都是独特的。然后,所得的仪器强度响应校正可用于获得针对许多但并非所有与仪器相关的伪像进行校正的拉曼光谱。环己烷强度校正后的拉曼光谱的峰面积比作为一种方法的示例给出,该方法用于验证光谱强度校准过程并说明此测量中可能出现的变化。