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FTIR study of hydrogen bonding of stearic acid with ethanol, dimethyl sulfoxide,and acetonitrile in supercritical CO_2

FTIR study of hydrogen bonding of stearic acid with ethanol, dimethyl sulfoxide,and acetonitrile in supercritical CO_2
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摘要 FTIR spectroscopy was used to study the hydrogen bonding of stearic acid with ethanol, dimethyl sulfoxide (DMSO),and acetonitrile in supercritical CO_2 at 318.15 K, and 12.5 and 16.5 MPa. The concentrations of the cosolvents range from 0—0.6 mol·L^(-1). The area percentage of absorption bands for hydrogen-bonded and nonhydrogen-bonded species was obtained from the IR spectra. The acid and the cosolvents can form hydrogen bond even when their concentrations are very low. At fixed solute concentration, the extent of hydrogenbonding increases with cosolvent concentration. At higher ethanol concentrations, it seems that one stearic acid molecule can hydrogen bond with more than one ethanol molecules simultaneously. It is seen that the strength of the hydrogen bond formed by the acid and the cosolvents is in the order: DMSO>ethanol>acetonitrile. FTIR spectroscopy was used to study the hydrogen bonding of stearic acid with ethanol, dimethyl sulfoxide (DMSO),and acetonitrile in supercritical CO_2 at 318.15 K, and 12.5 and 16.5 MPa. The concentrations of the cosolvents range from 0—0.6 mol·L^(-1). The area percentage of absorption bands for hydrogen-bonded and nonhydrogen-bonded species was obtained from the IR spectra. The acid and the cosolvents can form hydrogen bond even when their concentrations are very low. At fixed solute concentration, the extent of hydrogenbonding increases with cosolvent concentration. At higher ethanol concentrations, it seems that one stearic acid molecule can hydrogen bond with more than one ethanol molecules simultaneously. It is seen that the strength of the hydrogen bond formed by the acid and the cosolvents is in the order: DMSO>ethanol>acetonitrile.
机构地区 Institute of Chemistry
出处 《Chinese Journal of Chemistry》 SCIE CAS CSCD 1999年第3期223-230,201,共9页 中国化学(英文版)
基金 Special article from the First International Workshop on Green Chemistry, the University of Science Technology of China, Hefei, China, May, 1998. Project (No. 29633020 and 629725308) supported by the National Natural Science Foundation of China.
关键词 Green chemistry FTIR supercritical fluid hydrogen bonding Green chemistry,FTIR,supercritical fluid,hydrogen bonding
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  • 1Tomasko, D.L,Knutson, B.L,Pouillot, F.,Liotta, C.L.,Eckert, C.A. J.phys.hem . 1993
  • 2A. Morita,O. Kajimoto.Solute-solvent interaction in nonpolar supercritical fluid: a clustering model and size distribution. The Journal of Physical Chemistry . 1990
  • 3Betts T A,Zagrobelny J,Bright F V.Spectroscopic determi-nation of solute-fluid cluster size in supercritical nitrogen ox-ide(N2O). Journal of the American Chemistry Society . 1992
  • 4Seiji Akimoto and Okitsugu Kajimoto.Solvent-induced shift of the Raman spectra in supercritical fluids. The Journal of Chemical Physics . 1993
  • 5Gupta R B,,Combes J R,Johnston K P.Solvent Effect on Hydrogen Bonding in Supercritical Fluids. The Journal of Physical Chemistry . 1993
  • 6Tsugane H,Yagi Y.Dimerization of benzoic acid in saturate solution of supercritical carbon dioxide. Journal of Chemical Engineering of Japan . 1992
  • 7Cosani K A,Smith R D. Journal of Supercomputing . 1990
  • 8Fulton,J. L.,Yee,G. G.,Smith,R. D. Journal of the American Chemical Society . 1991
  • 9Dobbs,J.M.,Johnston,K.P. Industrial and Engineering Chemistry Research . 1987
  • 10Odinokov S E,Maximov O B,Dzizenko A K. Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy . 1969

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