Shimada Rintaro, Kano Hideaki, Hamaguchi Hiro-o
Department of Chemistry, School of Science, The University of Tokyo, Japan.
Opt Lett. 2006 Feb 1;31(3):320-2. doi: 10.1364/ol.31.000320.
We have developed hyper-Raman scattering microspectroscopy and applied it to a microcrystal of all-trans-beta-carotene. The hyper-Raman spectrum of all-trans-beta-carotene exhibits a Raman-inactive but infrared-active vibrational mode at 1564 cm(-1). Hyper-Raman imaging of a microcrystal was performed with this band. Infrared-active vibrational imaging was achieved with a spatial resolution much higher than that of conventional infrared microscopy. The combination of Raman and hyper-Raman spectroscopy opens up a new scope for high-spatial-resolution vibrational microspectroscopy that is not restricted by the selection rule.
我们已开发出超拉曼散射显微光谱技术,并将其应用于全反式β-胡萝卜素微晶。全反式β-胡萝卜素的超拉曼光谱在1564厘米-1处呈现出一种拉曼非活性但红外活性的振动模式。利用该波段对微晶进行了超拉曼成像。实现了空间分辨率远高于传统红外显微镜的红外活性振动成像。拉曼光谱和超拉曼光谱的结合为不受选择规则限制的高空间分辨率振动显微光谱开辟了新的领域。