楚雄师范学院学报 ›› 2026, Vol. 41 ›› Issue (3): 51-57.

• 物理学 • 上一篇    下一篇

巴戟天及其混伪品和配伍药材的红外光谱差异分析

张川云*, 彭春宏, 李伦, 鲁建康   

  1. 楚雄师范学院 光谱应用技术研究所,云南 楚雄 675000
  • 收稿日期:2026-03-02 出版日期:2026-05-20 发布日期:2026-07-22
  • 作者简介:张川云(1990-),女,副教授,研究方向为分子光谱。
  • 基金资助:
    云南省科技厅科技计划项目(No. 202301BA070001-058); 楚雄州自筹经费科技项目(No. cxzc2025013、No. cxzc2025007)

Differential Analysis of Infrared Spectra of Morinda officinalis, Its Adulterants and Compatible Medicinal Materials

Zhang Chuanyun*, Peng Chunhong, Li Lun, Lu Jiankang   

  1. Application Institute of Spectroscopy Technology, Chuxiong Normal University, Chuxiong, Yunnan Province 675000, China
  • Received:2026-03-02 Online:2026-05-20 Published:2026-07-22

摘要: 本文应用红外光谱技术,对巴戟天、羊角藤、黑老虎和高良姜的红外光谱展开研究。研究结果表明,四者的光谱峰型、峰位的差异主要出现在3 600~3 000 cm-1和1 800~600 cm-1范围,结合二阶导数光谱分析得出巴戟天、羊角藤、黑老虎和高良姜光谱中均含有淀粉、糖类、草酸钙和酯类等物质的谱峰,这些谱峰的叠加造成了四者谱峰的差异。通过系统聚类分析和主成分分析发现,聚类分析能将巴戟天、其混伪品及其配伍药材的40个随机样本分成4类,主成分分析同样将40个随机样本分在4个区域。上述分析结果表明,巴戟天、其混伪品和配伍药材高良姜的红外光谱具有指纹谱峰差异,红外光谱技术能实现对巴戟天及其混伪品、配伍药材的快速鉴别。

关键词: 巴戟天, 混伪品, 红外光谱, 聚类分析, 主成分分析

Abstract: In this study, infrared spectroscopy was adopted to analyze the infrared spectra of Morinda officinalis, Morinda umbellata, Kadsura coccinea and Alpinia officinarum. Spectral analysis revealed that the differences in spectral peak shapes and positions among the four medicinal materials were mainly concentrated in the ranges of 3600 ~ 3000 cm-1 and 1800 ~ 600 cm-1. Taking into consideration the results from second-derivative spectral analysis, it was confirmed that the characteristic peaks corresponding to starch, saccharides, calcium oxalate and esters existed in all four medicinal materials and the superposition of their characteristic peaks led to the spectral discrepancies among them. The cluster analysis and principal component analysis were further applied for classification research. Cluster analysis demonstrated that 40 random samples of Morinda officinalis, its adulterants and compatible herb could be divided into 4 categories, while principal component analysis classified these samples into four distinct regions. The above analysis results indicate that obvious fingerprint spectral differences exist in the infrared spectra of Morinda officinalis, its adulterants and compatible herb Alpinia officinarum, which enables the rapid identification and differentiation of the above herbal materials.

Key words: Morinda officinalis, adulterant, infrared spectroscopy, cluster analysis, principal component analysis

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