光谱学与光谱分析 |
|
|
|
|
|
Application and Progress of Fourier Transform Attenuated Total Reflection Infrared Spectroscopy |
XU Lin, WANG Nai-yan, BA Shu-hong, WANG Yun-long |
Nanjing University of Science and Technology, Institute of Chemistry, Nanjing 210094, China |
|
|
Abstract With the application of Fourier transform infrared spectrograph and the development of chemical metrology, Fourier Transform Attenuated Total Reflection Infrared spectroscopy (ATR-FTIR) has become a kind of beneficial tool and means for analyzing samples, for which traditional transmission way does not work quite effectively, and for analyzing surface layer structure. ATR-FTIR has been applied to every realm such as spinning and weaving, quality testing, public security and so on. At present, people are launching applied study based on specific property of ATR-FTIR. Therefore, this paper mainly introduced the present study situation and development situation of ATR-FTIR, including theoretical development for depth profiling, qualitative analysis of material surface, quantitative analysis of mixture and solution component, and the application of fiber as ATR appurtenance. In addition, some special fields were also involved, such as inspecting hollow cored fiber’s structure and change of orientation, and studying effective mechanism about skin promoter.
|
Received: 2003-02-26
Accepted: 2003-06-26
|
|
Corresponding Authors:
WANG Nai-yan
|
|
Cite this article: |
XU Lin,WANG Nai-yan,BA Shu-hong, et al. Application and Progress of Fourier Transform Attenuated Total Reflection Infrared Spectroscopy[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2004, 24(03): 317-319.
|
|
|
|
URL: |
http://www.gpxygpfx.com/EN/Y2004/V24/I03/317 |
[1] Jiang Bing Huang, Marek Wurban. Applied Spectroscopy, 1993, 47(7): 973. [2] Sanong Ekgasit, Hatsuo Ishida. Applied Spectroscopy, 1996, 50(9): 1187. [3] Koji Ohta, Reikichi Iwamoto. Analytical Chemistry, 1985, 39(3): 418. [4] Koji Ohta, Reikichi Iwamoto. Applied Spectroscopy, 1985, 39(13): 2491. [5] Robert A.Shick, Jack L. Koenig. Applied Spectroscopy, 1993, 47(8): 1237. [6] PAN Chun-hua et al(潘纯华等). Guangzhou Chemical Industry(广州化工), 2000, 28(3): 34. [7] LUO Chuan-qiu, LIU Yong, YANG Ji-ping et al(罗传秋, 刘 泳, 杨继萍等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 1999, 19(4): 553. [8] WU Yao-jing, ZHANG Ji-sui, HE Hui-yi(吴药镜,张继穗,何慧漪). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 1989, 9(4): 17. [9] Basch A, Tepper E. Analytical Chemistry, 1973, 27(4): 269. [10] SHEN De-yan(沈德言). Application of Infrared Spectral Technique for Polymer Composition(红外光谱法在高分子材料中的应用). Beijing(北京):Science Publishing Company(科学出版社), 1982. 133. [11] SUN Rui-qing, ZHANG Han-hui, YANG Rong-sheng(孙瑞卿, 张汉辉, 杨融生). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2001, 21(1): 105. [12] Shreed R S,Murthy Hara. Applied Spectroscopy, 1985, 39(5): 856. [13] Hart W W et al. Applied Spectroscopy, 1977, 31(3): 220. [14] Stewart M T, Urban M W. Polym. Mater. Sci. Eng., 1988, 59(2): 334. [15] Gedam P H, Sampathkumaran P S. Prog. Org. Coat., 1983, 11(4): 313. [16] Chen Jiaxing, Gardella Joseph A, Jr. Applied Spectroscopy, 1998, 52(3): 361. [17] F. de Lene Mirouze, Boulou J C, Dupuy N et al. Applied Spectroscopy, 1993, 47(8): 1187. [18] QIU Jiang et al(邱 江等). Journal of East China University of Science and Technology(华东理工大学学报), 1994, 23(2): 200. [19] Müller G, Riedel C. Fresenius’ J. Anal. Chem., 1999, 365: 43. [20] Nishio E, Morimoto M, Nishikida K. Applied Spectroscopy, 1990, 44(10): 1639. [21] Jeon J S, Sperline R P. Applied Spectroscopy, 1992, 46(1): 1644. [22] Holman D A, Thompson A W. Analytical Chemistry, 1994, 66(9): 1378. [23] WANG Dong-an, JI Jian(王东安, 计 剑). Biomedical Engine.(生物医学工程), 2002, 19(1): 4. [24] Shimon Simhony, Abraham Katzir. Analytical Chemistry, 1988, 60(18): 1908. [25] Ruddy V, McCabe S. Applied Spectroscopy, 1990, 44(9): 1461. [26] Taga K, Kellner R. Analytical Chemistry, 1994, 66(1): 35. [27] Vito Di Noto, Mauro Saccon. Analyst, 1990, 115: 1041. [28] XIAO Chang-fa(肖长发). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 1991, 11(6): 4. [29] LIU Shu-lin, WANG Bing-kui(刘术林, 王炳奎). Chinese Journal of Chemical Physis(化学物理学报), 1991, 4(6): 453. [30] Khoo C G L, Ishida H. Applied Spectroscopy, 1990, 44(3): 512. [31] DING Ping-tian, HAO Jin-song, ZHENG Jun-min(丁平田, 郝劲松, 郑俊民). Acta Biophysica Sinica(生物物理学报), 2000, 16(1): 48. [32] CHEN Zhu-sheng(陈竹生). Polymeric Materials Science and Engineering(高分子材料科学与工程), 1992, (6): 84. [33] MENG Jia-ming, REN Xi-juan, SHEN De-yan(孟家明, 任夕娟, 沈德言). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 1997, 17(2): 62. [34] Mossoba M M, Yura Wecz M P. J. Am. Oil Chem. Soc.,1996, 73(8): 1003. [35] HU Shi-yu et al(胡石羽等). Texture Technology of National Defence; Chymistry, Dyeing, Enviromental Protection Fascicule(国防纺织技术; 化纤, 染整, 环境保护分册). 1993, (1): 40. [36] WANG Hai-shui, XI Shi-quan(王海水,席时权). In: WU Jin-guang. The Technology and Application of Fourier Transform Infrared Spectroscopy(吴瑾光主编. 近代傅里叶变换红外光谱技术及应用). Beijing: Scientific and Technical Documents Publishing House(北京: 科学技术文献出版社), 1994. 1. [37] Singhs. Spectroscopy(Eugene, Oreg), 1995, 10(3): 36.
|
[1] |
LI Shu-jie1, LIU Jie1, DENG Zi-ang1, OU Quan-hong1, SHI You-ming2, LIU Gang1*. Study of Germinated Rice Seeds by FTIR Spectroscopy Combined With Curve Fitting[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(06): 1832-1840. |
[2] |
ZHA Ling-ling1, 2, 3, WANG Wei2*, XIE Yu1, SHAN Chang-gong2, ZENG Xiang-yu2, SUN You-wen2, YIN Hao2, HU Qi-hou2. Observation of Variations of Ambient CO2 Using Portable FTIR
Spectrometer[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(04): 1036-1043. |
[3] |
AIBIBAIHAN Maturzi1, XU Rong2, LI Xiao-jin1, 3*, FAN Cong-zhao3, QI Zhi-yong3, ZHU Jun3, WANG Guo-ping3, ZHAO Ya-qin3. Study on Infrared Spectrum Fingerprint of Apocynumvenetum L. in Xinjiang Based on Double Index Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(03): 757-763. |
[4] |
LI Ying-ying1, ZHANG Zhi-qing1*, WU Xiao-hong2, Andy Hsitien Shen1*. Photoluminescence in Indonesian Fossil Resins[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(03): 814-820. |
[5] |
CAO Qiu-hong, LIN Hong-mei, ZHOU Wei, LI Zhao-xin, ZHANG Tong-jun, HUANG Hai-qing, LI Xue-min, LI De-hua*. Water Quality Analysis Based on Terahertz Attenuated Total Reflection Technology[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(01): 31-37. |
[6] |
AN Zhen-hua1, ZHAO Dong-yan2, YE Yan1, YANG Rui1*, WANG Yu-bo2, SHAO Jin2, ZHANG Peng2, CHEN Yan-ning2, 3, ZHOU Min2, WANG Wen-he2, WANG Zheng2, HUANG Hai-chao2, WANG Li-cheng3, ZHONG Ming-chen3, ZHEN Yan2, WAN Yong2. A Novel Aging Evaluation Method of Nylon[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(01): 43-48. |
[7] |
JIA Ting-gui1,2, LI Xun1*, QU Guo-na1, LI Wei3, YAO Hai-fei3,4,5, LIU Ting-fang6. FTIR Characterization of Chemical Structures Characteristics of Coal Samples With Different Metamorphic Degrees[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(11): 3363-3369. |
[8] |
LI Qiong, MA Shuai-shuai, PANG Shu-feng, ZHANG Yun-hong*. Measurement on Mass Growth Factors of (NH4)2SO4, NH4NO3, and Mixed (NH4)2SO4/NH4NO3 Aerosols Under Linear RH Changing Mode[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(11): 3444-3450. |
[9] |
WU Jing-xuan, LI Jie*, LIN Jia-wei, YI Shi-wen, LI Min, SU Wen-rou. Influence Mechanism of Microwave on Barite Flotation Based on Infrared Fitting Spectrum Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(10): 3083-3091. |
[10] |
NI Liu-fang1, 2, YU Jing1, WANG Xin-ping1, WANG Jun1, CAO Xiao-xia2, CAO Shi-lin1*, MA Xiao-juan1*. Studies on the Effects of Sodium Hydroxide on Hydrogen Bonding of Water and Ionic Liquid/H2O Systems by ATR-IR Analyses[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(10): 3106-3110. |
[11] |
ZHANG Ying-qiang1, ZHANG Shui-qin2, WANG Li-yan1*, YUAN Liang2, LI Yan-ting2, XIONG Qi-zhong3, LIN Zhi-an2, ZHAO Bing-qiang2*. Multispectral Structural Characterization of Low-Molecular-Weight Organic Acids Modified Urea[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(10): 3129-3136. |
[12] |
ZHAO Yu-xuan1, ZENG Le-yang-zi2, LI Kai-kai1*. Identification of Different Brands Erasable Pens by Infrared Spectroscopy Combined With Chemometrics Methods[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(08): 2420-2426. |
[13] |
WU Jing-zhu1, LI Xiao-qi1, SUN Li-juan2, LIU Cui-ling1, SUN Xiao-rong1, SUN Mei1, YU Le1. Study on the Optimization Method of Maize Seed Moisture Quantification Model Based on THz-ATR Spectroscopy[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(07): 2005-2011. |
[14] |
WAN Hong-bing, LI Hai-peng, LEI Yuan-hua, XIE Peng, ZHANG Song-shan, FENG Yong-hong, LIU Xuan, WANG Huan, SUN Bao-zhong*. Effect of Degree of Doneness on Conformation of Myofibrillar Proteins by Two-Dimensional Infrared Correlation Spectroscopy[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(07): 2082-2086. |
[15] |
ZHANG Feng1, TANG Xiao-jun1*, TONG Ang-xin1, WANG Bin1, TANG Chun-rui2, WANG Jie2. A Mid-Infrared Wavelength Selection Method Based on the Impact Value of Variables and Population Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(06): 1795-1799. |
|
|
|
|