Carter J Chance, Scrivens Wally A, Myrick M L, Angel S Michael
Department of Chemistry and Biochemistry, University, of South Carolina, Columbia, South Carolina 29208, USA.
Appl Spectrosc. 2003 Jul;57(7):761-7. doi: 10.1366/000370203322102834.
A commercially available fiber-optic Raman probe was modified for high-resolution spectral Raman imaging using a 350 microm diameter optical fiber image guide coupled to a dimension-reduction imaging array (DRIA). The DRIA comprised 672 optical fibers, arranged as a square array (21 x 32 fibers) on one end and a linear array (672 x 1 fibers) on the other. An imaging spectrograph was used with the DRIA to acquire multi-wavelength Raman images from -250 to 1800 cm(-1) at a spectral resolution of approximately 5 cm(-1). The utility of this technique for in situ and remote Raman imaging is demonstrated by monitoring the polymerization of a model polymer, dibromostyrene (DBS), while simultaneously measuring the Raman Stokes/ anti-Stokes ratio as a function of sample heating time, over a sample area of approximately 4 x 1.6 mm.
一种市售的光纤拉曼探头经过改进,用于高分辨率光谱拉曼成像,它使用了一根直径为350微米的光纤图像导向器,该导向器与一个降维成像阵列(DRIA)相连。DRIA由672根光纤组成,一端排列成方形阵列(21×32根光纤),另一端排列成线性阵列(672×1根光纤)。使用成像光谱仪与DRIA一起,以大约5厘米-1的光谱分辨率获取从-250至1800厘米-1的多波长拉曼图像。通过监测模型聚合物二溴苯乙烯(DBS)的聚合反应,同时测量拉曼斯托克斯/反斯托克斯比随样品加热时间的变化,在大约4×1.6毫米的样品区域上,证明了该技术用于原位和远程拉曼成像的实用性。