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Fourier Transform Raman Scattering of Lumichrome Using CW Nd:YAG 1064 nm Excitation

  • Lee Nam-Soo (Department of Chemistry, Chungbuk National University)
  • Published : 1994.01.20

Abstract

Keywords

References

  1. J. Am. Chem. Soc. v.108 Lee, N.-S.;Sheng, R.-S.;Morris, M. D.;Schopfer, L. M.
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  3. J. Am. Chem. Soc. v.109 Holt, R. E.;Cotton, T. M.
  4. J. Raman Spectrosc. v.23 Yoo, H.-S.;Lee, N.-S.;Hanazaki, I.
  5. J. Phys. Chem. v.94 Lively, C. R.;McFarland, J. T.
  6. Spectrochim. Acta v.43 Abe, M.;Kyogoku, Y.
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  8. J. Chem. Phys. v.73 Bowman, W. D.;Spiro, T. G.
  9. The Aldrich Library of Infrared Spectra Pouchert, C. J.
  10. Characteristic Raman Frequencies of Organic Compounds Dollish, F. R.;Fateley, W. G.;Bentley, F. F.
  11. Introduction to Infrared and Raman Spectroscopy Clothup, N. B.;Daly, L. H.;Wiberley, S. E.
  12. Biochemistry v.22 Schmidt, J.;Coudron, P.;Thompson, A. W.;Watters, K. L.;MaFarland, J. T.

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  1. Surface photochemistry: alloxazine within nanochannels of Na+ and H+ ZSM-5 zeolites vol.11, pp.27, 2009, https://doi.org/10.1039/b903013a
  2. Surface‐enhanced Raman Spectroscopy and Density Functional Theory Studies of Riboflavin, Lumiflavin, and Lumichrome Adsorbed on Silver Colloids vol.40, pp.12, 1994, https://doi.org/10.1002/bkcs.11898