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  1. Schellman, J. A. (1973). "Vibrational Optical Activity." J Chem Phys 58: 2882-2886.
  2. Nafie, L. A. (1981). "Infrared and Raman Vibrational Optical Activity." Vibrational Spectra and Structure. J. R. Durig. Amsterdam, Elsevier. 10: 153-225.
  3. Nafie, L. A. (1982). "The Emergence and Exploration of Vibrational Optical Activity." Appl Spectrosc 36: 496-498.
  4. Nafie, L. A. (1984). "Experimental and Theoretical Advances in Vibrational Optical Activity." Adv Infrared and Raman Spec 11: 49-93.
  5. Stephens, P. J.; Lowe, M. A. (1985). "Vibrational Circular Dichroism." Ann Rev Phys Chem 36: 213-241.
  6. Diem, M. (1987). "Vibrational Optical Activity: Application to Biomolecules." Spectroscopic and Structural Studies of Biomaterials: 1. Proteins. J. Twardowski. Wilmslow, UK, Sigma Press: 49.
  7. Freedman, T. B.; Nafie, L. A. (1987). "Stereochemical Aspects of Vibrational Optical Activity." Topics in Sterochemistry. E. L. Eliel and S. H. Wilen. New York, John Wiley & Sons. 17: 113-206.
  8. Nafie, L. A.; Freedman, T. B. (1987). "Vibrational Circular Dichroism Spectroscopy." Spectroscopy 2(12): 24-29.
  9. Diem, M. (1988). "Infrared Vibrational Circular Dichroism." Spectroscopy of Biological Molecules - New Advances. E. D. Schmid, F. W. Schneider and F. Siebert. New York, J. Wiley & Sons: 57.
  10. Nafie, L. A. (1988). "Polarization Modulation FTIR Spectroscopy." Adv Appl FTIR Spectrosc. M. W. Mackenzie. New York, John Wiley & Sons: 67-104.
  11. Polavarapu, P. L. (1989). "Vibrational Optical Activity." Vibrational Spectra and Structure. H. D. Bist, J. R. Durig and J. F. Sullivan. Amsterdam, Elsevier. 17B: 319-342.
  12. Keiderling, T. A. (1990). "Vibrational Circular Dichroism. Comparison of Technique and Practical Considerations." Practical Fourier Transform Infrared Spectroscopy. Industrial and Laboratory Chemical Analysis. J. R. Ferraro and K. Krishnan. San Diego, Academic Press: 203-284.
  13. Nafie, L. A. (1991). "Methods and Applications of Infrared and Raman Vibrational Optical Activity." Lectures and Posters of the Fourth International Conference on Circular Dichroism. H. Klein and G. Snatzke. Bochum, Germany, Ruhrgebiet, Essen: 101-114.
  14. Freedman, T. B.; Nafie, L. A. (1993). "Infrared Circular Dichroism." Metallobiochemistry, Methods of Exzymology, Part C. J. F. Riordan and B. L. Vallee. New York, Academic Press. 226: 306-319.
  15. Keiderling, T. A. (1994). "Vibrational Circular Dichroism Spectroscopy of Peptides and Proteins." Circular Dichroism, Interpretation and Applications. K. Nakanishi, N. D. Berova and R. W. Woody. New York, VCH Pubishers: 497-521.
  16. Nafie, L. A.; Yu, G.-S.; et al. (1994). "Comparison of IR and Raman Forms of Vibrational Optical Activity." Faraday Discuss. 99: 13-34.
  17. Keiderling, T. A. (1996). "Protein Structural Studies Using Vibrational Circular Dichroism Spectroscopy." Spectroscopic Methods for Determining Protein Structure in Solution. H. A. Havel. New York, VCH Publishers: 163-189.
  18. Nafie, L. A. (1996). "Vibrational Optical-Activity." Appl Spectrosc 50(5): A14-A26.
  19. Barron, L. D. (1997). "From Cosmic Chirality to Protein Structure and Function: Lord Kelvin's Legacy." QJM-Month J Assoc Phys 90: 793-800.
  20. Nafie, L. A. (1997). "Infrared and Raman Vibrational Optical Activity: Theoretical and Experimental Aspects." Ann Rev Phys Chem 48: 357-386.
  21. Nafie, L. A.; Freedman, T. B. (1998). "Vibrational Circular Dichroism: An Incisive Tool for Stereochemical Applications." Enantiomer 3: 283-297.
  22. Barron, L. D.; Hecht, L.; et al. (2000). "Vibrational Raman Optical Activity: From Fundamentals to Biological Applications." Circular Dichroism: Principles and Applications, Second Edition. N. Berova, K. Nakanishi and R. W. Woody. New York, Wiley-VCH: 667-701.
  23. Dukor, R. K.; Nafie, L. A. (2000). "Vibrational Optical Activity of Pharmaceutical Molecules." Encyclopedia of Analytical Chemistry. R. A. Meyers. Chichester, John Wiley &Sons, Ltd.: 662-676.
  24. Nafie, L. A.; Freedman, T. B. (2000). "Biological and Pharmaceutical Applications of Vibrational Optical Activity." Infrared and Raman Spectroscopy of Biological Materials. H.-U. Gremlich and B. Yan. New York, Marcel Dekker, Inc.: 15-54.
  25. Nafie, L. A.; Freedman, T. B. (2000). "Theory of Vibrational Optical Activity." Circular Dichroism: Principles and Applications, Second Edition. K. Nakanishi, N. Berova and R. Woody. New York, Wiley-VCH: 97-131.
  26. Nafie, L. A. (2000). "Theory of raman optical activity." Encyclopedia of Spectroscopy and Spectrometry, J. Lindon, G. Tranter and J, Holmes, Eds., Academic Press, Ltd., London: 1976-1985.
  27. Pancoska P. (2000). "Circular dichroism in analysis of biomolecules." Encyclopedia of Analytical Chemistry: Instrumentation and Application, R. A. Meyers, Ed., John Wiley and Sons Ltd., Chichester.
  28. Polavarapu, P. L.; Zhao, C. (2000). "Vibrational circular dichroism: a new spectroscopic tool for biomolecular structural determination." J Anal Chem 366(6-7): 727-734.
  29. Keiderling, T. A. (2001). "Vibrational circular dichroism of peptides and proteins. Survey of techniques, qualitative and quantitative analyses, and applications." Pract Spectrosc 24: 55-100.
  30. Nafie, L. A.; Freedman, T. B. (2001). "Biological and pharmaceutical applications of vibrational optical activity." Pract Spectrosc 24 (Infrared and Raman Spectroscopy of Biological Materials): 15-54.
  31. Castiglioni, E.; Lebon, F.; Longhi, G.; Abbate, S. (2002). "Vibrational circular dichroism in the near infrared: instrumental developments and applications." Enantiomer 7(4-5): 161-173.
  32. Nafie, L. A.; Dukor, R. K.; et al. (2002). "Vibrational Circular Dichroism." Handbook of Vibrational Spectroscopy. J. M. Chalmers and P. R. Griffiths. Chichester, John Wiley & Sons: 731-744.
  33. Stephens, P. J.; Devlin, F. J.; Aamouche, A. (2002). "Determination of the structures of chiral molecules using Vibrational Circular Dichroism spectroscopy." ACS Symp Series 810(Chirality: Physical Chemistry): 18-33.
  34. Urbanova, M.; Setnicka, V.; Volka, K. (2002). "Vibrational circular dichroism spectroscopy as a novel tool for structure analysis." Chemicke Listy 96(5): 301-304.
  35. BioTools, Inc. (2003). "Determination of Absolute Configuration." Spectroscopy (Suppl.): 17.
  36. Blanch, E. W.; Hecht, L.; Barron, L. D. (2003). "Vibrational Raman optical activity of proteins, nucleic acids, and viruses." Methods 29(2): 196-209.
  37. Barron, L. D.; Hecht, L.; McColl, I. H.; Blanch, E. W. (2004). "Raman optical activity comes of age." Mol Phys 102(8): 731-744.
  38. Blanch, E. W.; McColl, I. H.; Hecht, L.; Nielsen, K.; Barron, L. D. (2004). "Structural characterization of proteins and viruses using Raman optical activity." Vibrational Spectroscopy 35(1-2): 87-92.
  39. Kuppens, T.; Bultinck, P.; Langenaeker, W. (2004). "Determination of absolute configuration via vibrational circular dichroism." Drug Discovery Today: Technologies 1(3): 269-275.
  40. Stephens, P. J. (2004). "Vibrational circular dichroism spectroscopy: A new tool for the stereochemical characterization of chiral molecules." Computational Medicinal Chemistry for Drug Discovery: 699-725.
  41. Taniguchi, T; Miura, N.; Nishimura, S. I.; Monde, K. (2004). "Vibrational circular dichroism: chiroptical analysis of biomolecules." Molecular Nutrition & Food Research 48(4): 246-254.
  42. Pecul, M.; Ruud, K. (2005). "Ab initio calculation of vibrational Raman optical activity." Int J Quant Chem 104(5): 816-829.
  43. Zhu, F.; Isaacs, N. W.; Hecht, L.; Barron, L. D. (2005). "Raman Optical Activity: A Tool for Protein Structure Analysis." Structure 13(10): 1409-1419.
  44. Keiderling, T. A.; Kubelka, J.; Hilario, J. (2006). "Vibrational circular dichroism of biopolymers: summary of methods and applications." Vibrational Spectroscopy of Biological and Polymeric Materials: 253-324.
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