Wu Xiao-Qiong, Zheng Jian-Zhen, Liu Wen-Han, Lin Zhen-Xing
College of Chemical Engineering and Material Science, Zhejiang University of Technology, Hangzhou 310032, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2007 Jul;27(7):1344-6.
In the present paper we report quantitative analysis of glucose using internal standard laser Raman spectra. A good linear correlation was observed between the intensities of the -COO band at 1 125 cm(-1) using excition wavelength of 632.81 nm (r = 0.998 8) and the glucose concentration over the range 0-1.8 mol x L(-1). Band intensities were normalized against an internal standard (water band at 1 643 cm(-1)), and the limit of detection (L. O. D.) of glucose is 0.022 7 mol x L(-1). The interference ions would not influence the quantitative analysis. When this method was used to determine 5% glucose NaCl, 5% glucose, and 10% glucose injections, the result showed that the recoveries are 71.88%-126.31%, 81.02%-124.89% and 74.87%-121.32%, and the RSDs are 5.44%, 4.34% and 0.94%, respectively. The non destructive, non intrusive nature of the method makes internal standard laser Raman spectra a convenient, accurate, and green quantitative analysis method.
在本文中,我们报道了使用内标激光拉曼光谱对葡萄糖进行定量分析。在激发波长为632.81 nm时,观察到1125 cm⁻¹处 -COO带的强度与0 - 1.8 mol·L⁻¹范围内的葡萄糖浓度之间存在良好的线性相关性(r = 0.9988)。带强度以内标(1643 cm⁻¹处的水带)进行归一化,葡萄糖的检测限为0.0227 mol·L⁻¹。干扰离子不会影响定量分析。当该方法用于测定5%葡萄糖氯化钠注射液、5%葡萄糖注射液和10%葡萄糖注射液时,结果表明回收率分别为71.88% - 126.31%、81.02% - 124.89%和74.87% - 121.32%,相对标准偏差分别为5.44%、4.34%和0.94%。该方法的非破坏性、非侵入性使得内标激光拉曼光谱成为一种方便、准确且绿色的定量分析方法。