Identification of the raman characteristic spectrum vibrations for various PAEs based on benzene solvent effect

被引:0
|
作者
Qiu, You-Li [1 ,2 ]
Zeng, Ya-Ling [1 ,2 ]
Jiang, Long [1 ,2 ]
Li, Yu [1 ,2 ]
机构
[1] Resources and Environmental Research Academy, North China Electric Power University, Beijing,102206, China
[2] MOE Key Laboratory of Regional Energy Systems Optimization, North China Electric Power University, Beijing,102206, China
来源
关键词
Solvents - Density functional theory - Spectrometers - Deformation - Depolarization - Esters - Benzene;
D O I
10.3788/fgxb20153608.0976
中图分类号
学科分类号
摘要
By means of density functional theory and self-consistent reaction field in B3LYP/6-311G(d) method, the 16 kinds of phthalate esters (PAEs): BBP,DBP,DCHP,DEHP,DEP,DIDP,DINP, DMP, DNOP, BMPP, DAP, DHP, DIPrP, DMEP, DPhP and DPP were selected and their structures were optimized. Their Raman vibrational frequencies and depolarization in atmosphere and 6 kinds of solvents were calculated. The results show that Raman vibrations of 16 PAEs are assigned to ring deformation,ester base deformation,C-C stretching,C-H wiggle,C-H stretching and of these several patterns. The peak position of the ester base functional group is relatively fixed in 1 700-1 780 cm-1. Raman peak of ester base vibration is stronger,and the polarization degree is lower (the symmetry of vibration was stronger). Therefore, the ester base vibration can be regarded as the characteristic vibration. But the minimum differential wave numbers of only 12 kinds of PAEs are larger than micro Raman spectrometer detection limit (0.2 cm-1), so the 16 kinds of PAEs can not be fully identified by depolarization and the Raman peak of ester base vibration frequency area. Solvent effect analysis shows that benzene solvent has obvious enhanced solvent effects on 16 kinds of PAEs. The minimum differential wave numbers of 16 kinds of PAEs increase to 0.2 cm-1 above and the Raman intensity increases to 23%-183%,which illustrate that the 16 kinds of PAEs can be fully identified by depolarization and the Raman peak of ester base vibration frequency area. It provides theoretical basis for the detection of PAEs Raman spectroscopy. ©, 2015, Chines Academy of Sciences. All right reserved.
引用
收藏
页码:976 / 982
相关论文
共 50 条
  • [21] Raman spectrum identification based on the correlation score using the weighted segmental hit quality index
    Park, Jun-Kyu
    Park, Aaron
    Yang, Si Kyung
    Baek, Sung-June
    Hwang, Joonki
    Choo, Jaebum
    ANALYST, 2017, 142 (02) : 380 - 388
  • [22] Non-intrusive Load Identification by Combined Support Vector Machine Based on Structured Characteristic Spectrum
    Wu X.
    Yan M.
    Guo Y.
    Huang K.
    Jiao D.
    Dianli Xitong Zidonghua/Automation of Electric Power Systems, 2022, 46 (12): : 210 - 219
  • [23] A flow sensing method of power spectrum based on piezoelectric effect and vortex-induced vibrations
    Hu, Jie
    Peng, Hanmin
    Liu, Tingyu
    Yao, Xinke
    Wu, Huiyang
    Lu, Penghui
    MEASUREMENT, 2019, 131 (473-481) : 473 - 481
  • [24] The Integrated Monitoring Method of Optical Fiber Gas Pressure and Temperature Based on Reflection Spectrum Characteristic Identification
    Liu Xiao-ying
    Zeng Jie
    Guo Xiao-hua
    Gong Xiao-jing
    Li Ning-xi
    Li Tong-wei
    Wang Ji-Gang
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2017, 37 (09) : 2838 - 2843
  • [25] Dielectric spectrum characteristic parameter identification method based on two-step optimization and its application
    Xu Z.
    Zhang Y.
    Hu Z.
    Hu S.
    Lü F.
    Jin H.
    Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2019, 39 (07): : 161 - 167
  • [26] Liquid Refractive Index Monitoring Method Based on SM-NCF Reflection Spectrum Characteristic Identification
    Yuan Hui-ying
    Zeng Jie
    Wang Ke
    Gong Xiao-jing
    Li Yu
    Ma Chao
    Liang Da-kai
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2018, 38 (12) : 3821 - 3828
  • [27] SVD-based method for intensity normalization, background correction and solvent subtraction in Raman spectroscopy exploiting the properties of water stretching vibrations
    Palacky, Jan
    Mojzes, Peter
    Bok, Jiri
    JOURNAL OF RAMAN SPECTROSCOPY, 2011, 42 (07) : 1528 - 1539
  • [28] EFFECT OF PRESSURE AND TEMPERATURE ON THE O-H AND O-D STRETCHING, AND TRANSLATIONAL VIBRATIONS IN THE RAMAN-SPECTRUM OF ICE CLATHRATE
    JOHARI, GP
    CHEW, HAM
    PHILOSOPHICAL MAGAZINE B-PHYSICS OF CONDENSED MATTER STATISTICAL MECHANICS ELECTRONIC OPTICAL AND MAGNETIC PROPERTIES, 1984, 49 (03): : 281 - 294
  • [29] The Resonance Raman Spectrum of Cytosine in Water: Analysis of the Effect of Specific Solute-Solvent Interactions and Non-Adiabatic Couplings
    Xu, Qiushuang
    Liu, Yanli
    Wang, Meishan
    Cerezo, Javier
    Improta, Roberto
    Santoro, Fabrizio
    MOLECULES, 2023, 28 (05):
  • [30] Raman Spectroscopic Characteristic Structure Analysis and Rapid Identification of Food-Borne Pathogen Spores Based on SERS Technology
    Liu Shi-jie
    Zhu Yao-di
    Li Miao-yun
    Zhao Gai-ming
    Zhao Li-jun
    Ma Yang-yang
    Wang Na
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42 (09) : 2774 - 2780