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11 - Sum-frequency chiral spectroscopy

Published online by Cambridge University Press:  05 February 2016

Y. R. Shen
Affiliation:
University of California, Berkeley
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Publisher: Cambridge University Press
Print publication year: 2016

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References

Kelvin, W.: Baltimore Lectures on Molecular Dynamics and Wave Theory of Light. London: C.J. Clay & Sons, 1904.Google Scholar
Ball, P.: Designing the Molecular World: Chemistry at the Frontier; Princeton, New Jersey: Princeton University Press, 1996.Google Scholar
Barron, L. D.: Molecular Light Scattering and Optical Activity; 2nd ed.; Cambridge, UK ; New York: Cambridge University Press, 2004.CrossRefGoogle Scholar
Rosenfeld, L.: Quantenmechanische Theorie der Natiirlichen optischen Aktivitat von Fliissigkeiten und Gasen. Z. Phys. 1928, 52, 161174.CrossRefGoogle Scholar
Belkin, M. A.; Shen, Y. R.: Non-Linear Optical Spectroscopy as a Novel Probe for Molecular Chirality. Int Rev Phys Chem 2005, 24, 257299.CrossRefGoogle Scholar
Giordmai, Ja: Nonlinear Optical Properties of Liquids. Phys Rev 1965, 138, 15991606.CrossRefGoogle Scholar
Rentzepi, P. M.; Giordmai, J. A.; Wecht, K. W.: Coherent Optical Mixing in Optically Active Liquids. Phys Rev Lett 1966, 16, 792794.CrossRefGoogle Scholar
Fischer, P.; Wiersma, D. S.; Righini, R.; Champagne, B.; Buckingham, A. D.: Three-Wave Mixing in Chiral Liquids. Phys Rev Lett 2000, 85, 42534256.CrossRefGoogle ScholarPubMed
Kuhn, W.: The Physical Significance of Optical Rotatory Power. T Faraday Soc 1930, 26, 02930307.CrossRefGoogle Scholar
Belkin, M. A.; Han, S. H.; Wei, X.; Shen, Y. R.: Sum-Frequency Generation in Chiral Liquids near Electronic Resonance. Phys Rev Lett 2001, 87, 113001.CrossRefGoogle ScholarPubMed
Ji, N.; Ostroverkhov, V.; Belkin, M.; Shiu, Y. J.; Shen, Y. R.: Toward Chiral Sum-Frequency Spectroscopy. J Am Chem Soc 2006, 128, 88458848.CrossRefGoogle ScholarPubMed
Belkin, M. A.; Shen, Y. R.; Flytzanis, C.: Coupled-Oscillator Model for Nonlinear Optical Activity. Chem Phys Lett 2002, 363, 479485.CrossRefGoogle Scholar
Han, S. H.; Ji, N.; Belkin, M. A.; Shen, Y. R.: Sum-Frequency Spectroscopy of Electronic Resonances on a Chiral Surface Monolayer of Bi-Naphthol. Phys Rev B 2002, 66, 165415.CrossRefGoogle Scholar
Petralli-Mallow, T.; Wong, T. M.; Byers, J. D.; Yee, H. I.; Hicks, J. M.: Circular-Dichroism Spectroscopy at Interfaces: A Surface Second Harmonic Generation Study. J Phys Chem-Us 1993, 97, 13831388.CrossRefGoogle Scholar
Ji, N.; Shen, Y. R.: Optically Active Sum Frequency Generation from Molecules with a Chiral Center: Amino Acids as Model Systems. J Am Chem Soc 2004, 126, 1500815009.CrossRefGoogle ScholarPubMed
Hohn, E. G.; Weigang, O. E.: Electron Correlation Models for Optical Activity. J Chem Phys 1968, 48, 11271137&.CrossRefGoogle Scholar
Ji, N.; Shen, Y. R.: A Dynamic Coupling Model for Sum Frequency Chiral Response from Liquids Composed of Molecules with a Chiral Side Chain and an Achiral Chromophore. J Am Chem Soc 2005, 127, 1293312942.CrossRefGoogle Scholar
Belkin, M. A.; Kulakov, T. A.; Ernst, K. H.; Yan, L.; Shen, Y. R.: Sum-Frequency Vibrational Spectroscopy on Chiral Liquids: A Novel Technique to Probe Molecular Chirality. Phys Rev Lett 2000, 85, 44744477.CrossRefGoogle ScholarPubMed
Belkin, M. A.; Shen, Y. R.; Harris, R. A.: Sum-Frequency Vibrational Spectroscopy of Chiral Liquids off and Close to Electronic Resonance and the Antisymmetric Raman Tensor. J Chem Phys 2004, 120, 1011810126.CrossRefGoogle ScholarPubMed
Oh-e, M.; Yokoyama, H.; Yorozuya, S.; Akagi, K.; Belkin, M. A.; Shen, Y. R.: Sum-Frequency Vibrational Spectroscopy of a Helically Structured Conjugated Polymer. Phys Rev Lett 2004, 93, 267402.CrossRefGoogle ScholarPubMed
Belkin, M. A.; Shen, Y. R.: Doubly Resonant IR-UV Sum-Frequency Vibrational Spectroscopy on Molecular Chirality. Phys Rev Lett 2003, 91, 213907.CrossRefGoogle ScholarPubMed
Raschke, M. B.; Hayashi, M.; Lin, S. H.; Shen, Y. R.: Doubly-Resonant Sum-Frequency Generation Spectroscopy for Surface Studies. Chem Phys Lett 2002, 359, 367372.CrossRefGoogle Scholar
Byers, J. D.; Yee, H. I.; Hicks, J. M.: A Second-Harmonic Generation Analog of Optical-Rotatory Dispersion for the Study of Chiral Monolayers. J Chem Phys 1994, 101, 62336241.CrossRefGoogle Scholar
Hicks, J. M.; Petralli-Mallow, T.; Byers, J. D.: Consequences of Chirality in Second-Order Nonlinear Spectroscopy at Surfaces. Faraday Discuss 1994, 99, 341357.CrossRefGoogle Scholar
Petralli-Mallow, T. P.; Plant, A. L.; Lewis, M. L.; Hicks, J. M.: Cytochrome c at Model Membrane Surfaces: Exploration via Second Harmonic Generation-Circular Dichroism and Surface-Enhanced Resonance Raman Spectroscopy. Langmuir 2000, 16, 59605966.CrossRefGoogle Scholar
Kriech, M. A.; Conboy, J. C.: Label-Free Chiral Detection of Melittin Binding to a Membrane. J Am Chem Soc 2003, 125, 11481149.CrossRefGoogle ScholarPubMed
Sioncke, S.; Verbiest, T.; Persoons, A.: Second-Order Nonlinear Optical Properties of Chiral Materials. Mat Sci Eng R 2003, 42, 115155.CrossRefGoogle Scholar
Han, S. H.; Belkin, M. A.; Shen, Y. R.: Optically Active Second-Harmonic Generation from a Uniaxial Fluid Medium. Opt Lett 2004, 29, 15271529.CrossRefGoogle ScholarPubMed
Kriech, M. A.; Conboy, J. C.: Imaging Chirality with Surface Second Harmonic Generation Microscopy. J Am Chem Soc 2005, 127, 28342835.CrossRefGoogle ScholarPubMed
Ji, N.; Zhang, K.; Yang, H.; Shen, Y. R.: Three-Dimensional Chiral Imaging by Sum-Frequency Generation. J Am Chem Soc 2006, 128, 34823483.CrossRefGoogle ScholarPubMed
Zhang, K.; Ji, N.; Shen, Y. R.; Yang, H.: Optically Active Sum Frequency Generation Microscopy for Cellular Imaging. Springer Series Chem 2007, 88, 825827.CrossRefGoogle Scholar

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  • Sum-frequency chiral spectroscopy
  • Y. R. Shen, University of California, Berkeley
  • Book: Fundamentals of Sum-Frequency Spectroscopy
  • Online publication: 05 February 2016
  • Chapter DOI: https://doi.org/10.1017/CBO9781316162613.012
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  • Sum-frequency chiral spectroscopy
  • Y. R. Shen, University of California, Berkeley
  • Book: Fundamentals of Sum-Frequency Spectroscopy
  • Online publication: 05 February 2016
  • Chapter DOI: https://doi.org/10.1017/CBO9781316162613.012
Available formats
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Save book to Google Drive

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  • Sum-frequency chiral spectroscopy
  • Y. R. Shen, University of California, Berkeley
  • Book: Fundamentals of Sum-Frequency Spectroscopy
  • Online publication: 05 February 2016
  • Chapter DOI: https://doi.org/10.1017/CBO9781316162613.012
Available formats
×