光谱学与光谱分析 |
|
|
|
|
|
The Analysis of Gynostemma Pentaphyllum(Thunb) Makino for Chinese Crude Drug by FTIR and FT-Raman |
GUO Ping1, YUAN Ya-li2, XIONG Ping1 |
1. School of Info-Physics and Geomatics Engineering, Central South University, Changsha 410083, China 2. School of Chemistry and Chemical Engineering, Nanhua University, Hengyang 421001, China |
|
|
Abstract The Gynostemma Pentaphyllum is an important plant for Chinese crude drug. To qualitatively analyse the Gynostemma Pentaphyllum(Thunb) Makino, FTIR and FT-Raman were used to identify the contents of it. The results show, that the trough of each absorption in the picture of FTIR spectrum and the characteristic wave crest of each dispersion in the picture of FT-Raman spectrum had parallelism at their position, their relation pairs with each other. This is useful for the further on-line quantitative analysis and quality control of the Gynostemma Pentaphyllum(Thunb) Makino. This approach provide a quickly and accurately determination method of crude drug with out extraction and separation.
|
Received: 2004-03-06
Accepted: 2004-06-06
|
|
Corresponding Authors:
GUO Ping
|
|
Cite this article: |
GUO Ping,YUAN Ya-li,XIONG Ping. The Analysis of Gynostemma Pentaphyllum(Thunb) Makino for Chinese Crude Drug by FTIR and FT-Raman [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2004, 24(10): 1210-1212.
|
|
|
|
URL: |
http://www.gpxygpfx.com/EN/Y2004/V24/I10/1210 |
[1] SUN Su-qin,YU Jian-yuan,HU Xin-rao(孙素琴,郁监源,胡鑫尧). Spectroscopy and Spectral Analysis (光谱学与光谱分析),1999,19(6):841. [2] SUN Su-qin,ZHOU Qun,YU Jian-yuan,HU Xin-rao(孙素琴,周 群,郁监源,胡鑫尧). Spectroscopy and Spectral Analysis(光谱学与光谱分析),2000,20(2):199. [3] WANG Zhao,SUN Su-qin,LI Xiao-bo,ZHOU Qun, LIN Lin, DU De-guo(王 钊,孙素琴,李晓波,周 群,林 琳,杜德国). Spectroscopy and Spectral Analysis(光谱学与光谱分析),2001,21(3):311. [4] SUN Su-qin,ZHANG Xuan,QIN Zhu,HU Xin-rao(孙素琴,张 宣,秦 竹,胡鑫尧). Spectroscopy and Spectral Analysis (光谱学与光谱分析),1999,19(4):542. [5] LUO Zhen-ling, MA Li-ping, ZHANG Xiao-qin, MIAO Jian(娄振岭,马丽萍,张小琴,苗 健). The Journal of Oncology for Henan(河南肿瘤学杂志),1996, 9(3):168.
|
[1] |
MA Fang1, HUANG An-min2, ZHANG Qiu-hui1*. Discrimination of Four Black Heartwoods Using FTIR Spectroscopy and
Clustering Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(06): 1915-1921. |
[2] |
ZHANG Dian-kai1, LI Yan-hong1*, ZI Chang-yu1, ZHANG Yuan-qin1, YANG Rong1, TIAN Guo-cai2, ZHAO Wen-bo1. Molecular Structure and Molecular Simulation of Eshan Lignite[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(04): 1293-1298. |
[3] |
WANG Fang-fang1, ZHANG Xiao-dong1, 2*, PING Xiao-duo1, ZHANG Shuo1, LIU Xiao1, 2. Effect of Acidification Pretreatment on the Composition and Structure of Soluble Organic Matter in Coking Coal[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(03): 896-903. |
[4] |
HU Chao-shuai1, XU Yun-liang1, CHU Hong-yu1, CHENG Jun-xia1, GAO Li-juan1, ZHU Ya-ming1, 2*, ZHAO Xue-fei1, 2*. FTIR Analysis of the Correlation Between the Pyrolysis Characteristics and Molecular Structure of Ultrasonic Extraction Derived From Mid-Temperature Pitch[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(03): 889-895. |
[5] |
YANG Jiong1, 2, QIU Zhi-li1, 4*, SUN Bo3, GU Xian-zi5, ZHANG Yue-feng1, GAO Ming-kui3, BAI Dong-zhou1, CHEN Ming-jia1. Nondestructive Testing and Origin Traceability of Serpentine Jade From Dawenkou Culture Based on p-FTIR and p-XRF[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(02): 446-453. |
[6] |
HE Xiong-fei1, 2, HUANG Wei3, TANG Gang3, ZHANG Hao3*. Mechanism Investigation of Cement-Based Permeable Crystalline Waterproof Material Based on Spectral Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(12): 3909-3914. |
[7] |
ZHOU Jing1,2, ZHANG Qing-qing1,2, JIANG Jin-guo2, NIE Qian2, BAI Zhong-chen1, 2*. Study on the Rapid Identification of Flavonoids in Chestnut Rose (Rosa Roxburghii Tratt) by FTIR[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(10): 3045-3050. |
[8] |
Samy M. El-Megharbel*,Moamen S. Refat. In First Time: Synthesis and Spectroscopic Interpretations of Manganese(Ⅱ), Nickel(Ⅱ) and Mercury(Ⅱ) Clidinium Bromide Drug Complexes[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(10): 3316-3320. |
[9] |
Samy M. El-Megharbel*, Moamen S. Refat. Preparations and Spectroscopic Studies on the Three New Strontium(Ⅱ), Barium(Ⅱ), and Lead(Ⅱ) Carbocysteine Complexes[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(09): 2975-2979. |
[10] |
YU Chun-mei, ZHANG Nan, TENG Hai-peng. Investigation of Different Structures of Coals Through FTIR and Raman Techniques[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(07): 2050-2056. |
[11] |
QU Li-guo1,2,3, LIU Jian-guo1, XU Liang1*, XU Han-yang1, JIN Ling1, DENG Ya-song1,2, SHEN Xian-chun1, SHU Sheng-quan1,2. Vehicle Exhaust Detection Method Based on Portable FTIR[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(06): 1751-1757. |
[12] |
Samar O. Aljazzar. Spectroscopic Investigations for the Six New Synthesized Complexes of Fluoroquinolones and Quinolones Drugs With Nickel(Ⅱ) Metal Ion: Infrared and Electronic Spectroscopy[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(06): 1976-1981. |
[13] |
Lamia A. Albedair. Synthesis, Structural, Spectroscopic Characterization and Biological Properties of the Zn(Ⅱ), Cu(Ⅱ), Ni(Ⅱ), Co(Ⅱ), and Mn(Ⅱ) Complexes With the Widely Used Herbicide 2,4-Dichlorophenoxyacetic Acid[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(06): 1982-1987. |
[14] |
LI Ping1,2, WU Yi-qiang1, LÜ Jian-xiong3, YUAN Guang-ming1, ZUO Ying-feng1*. Effect of Biomimetic Respiration Method on the Impregnation Effect of Silicate Modified Chinese Fir by XPS and FTIR Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(05): 1430-1435. |
[15] |
HAO Hui-min1,2, LIANG Yong-guo1,2, WU Hai-bin1,2, BU Ming-long1,2, HUANG Jia-hai1,2*. Infrared Spectrum Recognition Method Based on Symmetrized Dot Patterns Coupled With Deep Convolutional Neural Network[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(03): 782-788. |
|
|
|
|