Vibrational Spectroscopic Investigation and DFT Calculations on the Decabromodiphenyl Ether

被引:0
|
作者
Feng Ming-Bao [1 ]
Qu Rui-Juan [1 ]
Wang Lian-Sheng [1 ]
Wang Zun-Yao [1 ]
机构
[1] Nanjing Univ, Sch Environm, State Key Lab Pollut Control & Resources Reuse, Nanjing 210046, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
decabromodiphenyl ether; B3LYP; FT-IR; FT-Raman; vibrational assignments; POLYBROMINATED DIPHENYL ETHERS; FLAME RETARDANTS; BROMOBENZENE DERIVATIVES; INFRARED-SPECTRA; NATURAL-PRODUCT; NMR-SPECTRA; HOUSE-DUST; CHLOROBENZENE; RAMAN; IR;
D O I
暂无
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Decabromodiphenyl ether (BDE-209), the major congener in the high volume industrial flame retardant mixture "DecaBDE", has become a ubiquitous environmental contaminant. In the present work, combined experimental and theoretical studies have been undertaken on the structure and vibrational spectra of BDE-209. The FT-IR (400-4000 cm(-1)) and FT-Raman spectra (100-4000 cm(-1)) of BDE-209 were recorded, while density functional B3LYP calculations were employed in conjunction with the 6-31G(d) basis set for investigating the corresponding geometric structure and vibrational spectroscopic properties. Besides, the detailed interpretations of fundamental vibrations were performed on the basis of experimental results and potential energy distribution (PED) of the vibrational modes. Optimized structures of the title compound were interpreted and compared with the earlier reported experimental values, which yield good agreement. Finally, the measured and calculated harmonic vibrational wavenumbers were compared with each other, and they were found to be in good accordance.
引用
收藏
页码:612 / 619
页数:8
相关论文
共 50 条
  • [41] Anaerobic degradation of decabromodiphenyl ether
    Gerecke, AC
    Hartmann, PC
    Heeb, NV
    Kohler, HPE
    Giger, W
    Schmid, P
    Zennegg, M
    Kohler, M
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2005, 39 (04) : 1078 - 1083
  • [42] Vibrational spectroscopy and DFT calculations of N,N′-dicyclohexylcarbodiimide
    Chowdhry, Babur Z.
    Dines, Trevor J.
    Leharne, Stephen A.
    Ryall, John P.
    Shadi, Iqbal T.
    Withnall, Robert
    JOURNAL OF RAMAN SPECTROSCOPY, 2011, 42 (02) : 230 - 238
  • [43] Vibrational Spectroscopic and Structural Investigations on Fullerene: A DFT Approach
    Christy, P. Anto
    Premkumar, S.
    Asath, R. Mohamed
    Mathavan, T.
    Benial, A. Milton Franklin
    INTERNATIONAL CONFERENCE ON CONDENSED MATTER AND APPLIED PHYSICS (ICC 2015), 2016, 1728
  • [44] Biosorption and degradation of decabromodiphenyl ether by Brevibacillus brevis and the influence of decabromodiphenyl ether on cellular metabolic responses
    Wang, Linlin
    Tang, Litao
    Wang, Ran
    Wang, Xiaoya
    Ye, Jinshao
    Long, Yan
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2016, 23 (06) : 5166 - 5178
  • [45] A vibrational spectroscopic investigation on benzocaine molecule
    Balci, K.
    Akyuz, S.
    VIBRATIONAL SPECTROSCOPY, 2008, 48 (02) : 215 - 228
  • [46] A VIBRATIONAL SPECTROSCOPIC INVESTIGATION OF SOLID CYCLOOCTANONE
    HUANG, YN
    BUTLER, IS
    GILSON, DFR
    JOURNAL OF PHYSICAL CHEMISTRY, 1992, 96 (03): : 1151 - 1156
  • [47] Spectroscopic analysis and DFT calculations of a food additive Carmoisine
    Snehalatha, M.
    Ravikumar, C.
    Joe, I. Hubert
    Sekar, N.
    Jayakumar, V. S.
    SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2009, 72 (03) : 654 - 662
  • [48] DFT CALCULATIONS ON SPECTROSCOPIC AND STRUCTURAL PROPERTIES OF A NLO CHROMOPHORE
    Alturk, Sumeyye
    Avci, Davut
    Tamer, Omer
    Atalay, Yusuf
    9TH INTERNATIONAL PHYSICS CONFERENCE OF THE BALKAN PHYSICAL UNION (BPU-9), 2016, 1722
  • [49] Anharmonic vibrational spectroscopic investigation of malonaldehyde
    Alparone, A
    Millefiori, S
    CHEMICAL PHYSICS, 2003, 290 (01) : 15 - 25
  • [50] FERROCENYLMETHYLNUCLEOBASES: SYNTHESIS, DFT CALCULATIONS, ELECTROCHEMICAL AND SPECTROSCOPIC CHARACTERISATION
    Lanez, Elhafnaoui
    Bechki, Lazhar
    Lanez, Touhami
    CHEMISTRY & CHEMICAL TECHNOLOGY, 2020, 14 (02): : 146 - 153