Ultrasonic Monitoring of Reaction of Fullerene$[C_{60}]$ with 3-Chloroperoxy Benzoic acid

풀러렌$[C_{60}]$과 3- Chloroperoxy Benzoic acid 반응의 초음파적 조사

  • Ko, Weon-Bae (Department of Chemistry, Sahmyook University) ;
  • Buckin, Vitaly (Department of Chemistry, University College Dublin)
  • Published : 2006.03.30

Abstract

The reaction of fullerene$[C_{60}]$ and 3-chloroperoxy benzoic acid in 1,2-dichlorobenzene was monitored by high resolution ultrasonic spectroscopy and the product of reaction by fullerene $[C_{60}]$ and 3-chloroperoxy benzoic acid in 1,2-dichlorobenzene was characterized using MALDI-TOF-MS spectra.

1,2-dichlorobenzene 용액에서 풀러렌$[C_{60}]$과 3-chloroperoxy benzoic acid 의 반응을 고분해능 초음파 분광기를 사용하여 조사하였다. 또한 1,2-dichlorobenzene 용액에서 풀러렌$[C_{60}]$과 3-chloroperoxy benzoic acid의 반응 생성물을 MALDI-TOF-MS를 가지고 확인하였다.

Keywords

References

  1. M. J. W. Povey, 'Ultrasonic Techniques for Fluids Characterization', Academic press, New York, 1997
  2. V. Buckin, C. Smyth, 'High-Resolution Ultrasonic Resonator Measu-rements for Analysis of Liquids', Semin. Food Anal. 4, 113 (1999)
  3. V. A. Hackley, J. Texter (Eds.), 'Handbook on Ultrasonic and Dielectric Characterization Techniques for Suspended Particles', The American Chemical Society, Westerville, OH, 1998
  4. E. Kudryashov, C. Smyth, G. Duffy, V. Buckin, 'Ultrasonic High Resolution Longitudinal and Shear Wave Measurements in Food Colloids: Monitoring of Gelation Processes and Detection of Pathogens', Prog. Colloid Polym. Sci. 115, 287 (2000) https://doi.org/10.1007/3-540-46545-6_56
  5. V. A. Buckin, A. P. Sarvazyan, E. I. Dudchenko, P.Hemmes, 'Ultrasonic Investigation of SoluteSolvent and Solute-Solute Intractions in Aqueous Solutions of Bases, Nucleosides, and Nuclotides. 2.pH-Dependent Solute-Solvent Interacions', J. Phys. Chem. 84, 696 (1980) https://doi.org/10.1021/j100444a003
  6. D. Geetha, C. Pakkappan, 'Ultrasonic Studies on Solutions of Hydroxyl Propyl Methyl Cellulose Phthalate in Alcohols and Acetone Mixture', Indian J. Phys. 778, 525 (2003)
  7. E. Kudryashov, T. Kapustina, S. Morrissey, V, Buckin, K. Dawson, 'The Compressibility of Alkyltrimethylammonium Bromide Micelles', J. Colloid Interface Sci. 203, 59 (1990)
  8. R. Zielinski, S. Ikeda, H. Nomura, S. Kato, 'Adiabatic Compressibility of Alkyltrimethylammonium Bromides in Aqueous Solutions', J. Colloid Interface Sci. 119, 398 (1987) https://doi.org/10.1016/0021-9797(87)90286-4
  9. M. J. Blandamer, P. M. Cullis, L. G. Soldi, J. B. N. F. Engberts, A. Kacperska, N. M.Van Os, M. C. S. Subha, 'Thermodynamics of Micellar System: Comparison of Mass Action and Phase Equilibrium Models for The Calculation of Standard Gibbs Energies of Micelle Formation', Adv. Colloid Interface Sci. 58, 171 (1995) https://doi.org/10.1016/0001-8686(95)00252-L
  10. P. Mukerjee, K. Mysels, 'J. NSRDS-NBS 36; U. S. Department of Commerce', Washington, DC, 1971
  11. D. M. Bloor, J. Gormally, E. Wyn-Jones, 'Adiabatic Compressibility of Surfactant Micelles in Aqueous Solution', J. Chem. Soc. Faraday Transl. 80, 1915 (1984) https://doi.org/10.1039/f19848001915
  12. M. J. Suarez, J. L. Lopez-Fontan, F. Sarmiento, V. Mosquera, 'Thermodynamic Study of The Aggregation Behavior of Sodium n-Hexyl Sulfate in Aqueous Solution', Langmuir, 15, 5265 (1999) https://doi.org/10.1021/la981759f
  13. A. S. Dukhin, P. J. Goetz, 'Ultrasound for characterizing liquid based food products', Dispersion Technology Inc. Publication, 1999
  14. J. N. Coupland, 'Low Intensity Ultrasound', Food Res. Int. 37, 537 (2004) https://doi.org/10.1016/j.foodres.2004.01.011
  15. V. Buckin, B. O'Driscoll, C. Smyth, A. C. Alting, R. W. Visschers, 'Ultrasonic Spectroscopy for Material Analysis. Recent Advances', Spectrosc. Eur. 15, 20 (2003)
  16. R. R. Chen, T. Zelesky, N. Ilasi, S. S. Sekulic, 'Simultaneously Measuring Concentrations of A Model Drug and A Model Excipient in Solution Using Ultrasonic Spectrometry', J. Pharm. Biomed. Anal. 37, 239 (2005) https://doi.org/10.1016/j.jpba.2004.10.023
  17. G. Andreatta, N. Bostrom, and O. C. Mullins, 'High-Q Ultrasonic Determination of the Critical Nanoaggregate Concentration of Asphaltenes and the Critical Micelle Concentration of Standard Surfactants', Langmuir. 21, 2728 (2005) https://doi.org/10.1021/la048640t
  18. T. I. J. Goodenough, V. S. Rajendram, S. Meyer, D. Pretre, 'Detection and Quantification of Insoluble Particles by Ultrasound Spetroscopy', Ultrasonics, 43(4), 231 (2005) https://doi.org/10.1016/j.ultras.2004.06.009