260
10 Applications: Organic Interfaces
20. Liu H, Tong Y, Kuwata N, Osawa M, Kawamura J, and Ye S (2009) Adsorption of propylene
carbonate (PC) on the LiCoO 2 surface investigated by nonlinear vibrational spectroscopy. J
Phys Chem C 113:20531–20534
21. Long DA (1977) Raman spectroscopy. McGraw-Hill, New York
22. Long DA (2002) The Raman effect. Wiley, New York
23. Lü R, Gan W, Wang H (2003) Novel method for accurate determination of the orientational
angle of interfacial chemical groups. Chin Sci Bull 48:2183–2187
24. Ma G, Allen HC (2003) Surface studies of aqueous methanol solutions by vibrational broad
bandwidth sum frequency generation spectroscopy. J Phys Chem B 107:6343–6349
25. Matsuzaki K, Nihonyanagi S, Yamaguchi S, Nagata T, Tahara T (2013) Vibrational sum
frequency generation by the quadrupolar mechanism at the nonpolar benzene/air interface. J
Phys Chem Lett 4:1654–1658
26. McQuarrie DA (2000) Statistical mechanics, 2nd edn. University Science Books, Sausalito
27. Nicolau BG, Garca-Rey N, Dryzhakov B, Dlott DD (2015) Interfacial processes of a
model lithium ion battery anode observed, in situ, with vibrational sum-frequency generation
spectroscopy. J Phys Chem C 119:10227–10233
28. Saito K, Peng Q, Qiao L, Wang L, Joutsuka T, Ishiyama T, Ye S, Morita A (2017) Theoretical
and experimental examination on SFG polarization analysis at acetonitrile-water solution
surfaces. Phys Chem Chem Phys 19:8941–8961
29. Schwartz M, Moradi-Araghi A, Koehler WH (1980) Fermi resonance in aqueous methanol. J
Mol Struct 63:279–285
30. Shultz MJ, Bisson P, Groenzin H, Li I (2010) Multiplexed polarization spectroscopy:
measuring surface hyperpolarizability orientation. J Chem Phys 133:054702
31. Sung J, Park K, Kim D (2005) Surfaces of alcohol-water mixtures studied by sum-frequency
generation vibrational spectroscopy. J Phys Chem B 109:18507–18514
32. Wang H-F, Gan W, Lu R, Rao Y, Wu B-H (2005) Quantitative spectral and orientational
analysis in surface sum frequency generation vibrational spectroscopy (SFG-VS). Int Rev
Phys Chem 24:191–256
33. Wang J, Chen X, Clarke ML, Chen Z (2005) Detection of chiral sum frequency generation
vibrational spectra of proteins and peptides at interfaces in situ. Proc Natl Acad Sci U S A
102:4978–4983
34. Wang L, Ishiyama T, Morita A (2017) Theoretical investigation of C–H vibrational spectroscopy. 1. Modeling of methyl and methylene groups of ethanol with different conformers. J
Phys Chem A 121:6687–6700
35. Wang L, Ishiyama T, Morita A (2017) Theoretical investigation of C–H vibrational spectroscopy. 2. Unified assignment method of IR, Raman and SFG spectra of ethanol. J Phys
Chem A 121:6701–6712
36. Wu H, Zhang W-K, Gan W, Cui Z-F, Wang H-F (2006) An empirical approach to the bond
additivity model in quantitative interpretation of sum frequency generation vibrational spectra.
J Chem Phys 125:133203
37. Yan ECY, Fu L, Wang Z, Liu W (2014) Biological macromolecules at interfaces probed by
chiral vibrational sum frequency generation spectroscopy. Chem Rev 114:8471–8498
38. Zhang TG, Zhang CH, Wong GK (1990) Determination of molecular orientation in molecular
monolayers by second-harmonic generation. J Opt Soc Am B 7:902–907
39. Zhang D, Gutow JH, Eisenthal KB, Heinz TF (1993) Sudden structural change at an air/binary
liquid interface: sum frequency study of the air/acetonitrile-water interface. J Chem Phys
98:5099–5101
40. Zhang D, Gutow J, Eisenthal KB (1994) Vibrational spectra, orientations, and phase transitions
in long-chain amphiphiles at the air/water interface: probing the head and tail groups by sum
frequency generation. J Phys Chem 98:13729–13734
41. Zhang D, Gutow JH, Eisenthal KB (1996) Structural phase transition of small molecules at
air/water interfaces. J Chem Soc Faraday Trans 92:539–543
10 Applications: Organic Interfaces
20. Liu H, Tong Y, Kuwata N, Osawa M, Kawamura J, and Ye S (2009) Adsorption of propylene
carbonate (PC) on the LiCoO 2 surface investigated by nonlinear vibrational spectroscopy. J
Phys Chem C 113:20531–20534
21. Long DA (1977) Raman spectroscopy. McGraw-Hill, New York
22. Long DA (2002) The Raman effect. Wiley, New York
23. Lü R, Gan W, Wang H (2003) Novel method for accurate determination of the orientational
angle of interfacial chemical groups. Chin Sci Bull 48:2183–2187
24. Ma G, Allen HC (2003) Surface studies of aqueous methanol solutions by vibrational broad
bandwidth sum frequency generation spectroscopy. J Phys Chem B 107:6343–6349
25. Matsuzaki K, Nihonyanagi S, Yamaguchi S, Nagata T, Tahara T (2013) Vibrational sum
frequency generation by the quadrupolar mechanism at the nonpolar benzene/air interface. J
Phys Chem Lett 4:1654–1658
26. McQuarrie DA (2000) Statistical mechanics, 2nd edn. University Science Books, Sausalito
27. Nicolau BG, Garca-Rey N, Dryzhakov B, Dlott DD (2015) Interfacial processes of a
model lithium ion battery anode observed, in situ, with vibrational sum-frequency generation
spectroscopy. J Phys Chem C 119:10227–10233
28. Saito K, Peng Q, Qiao L, Wang L, Joutsuka T, Ishiyama T, Ye S, Morita A (2017) Theoretical
and experimental examination on SFG polarization analysis at acetonitrile-water solution
surfaces. Phys Chem Chem Phys 19:8941–8961
29. Schwartz M, Moradi-Araghi A, Koehler WH (1980) Fermi resonance in aqueous methanol. J
Mol Struct 63:279–285
30. Shultz MJ, Bisson P, Groenzin H, Li I (2010) Multiplexed polarization spectroscopy:
measuring surface hyperpolarizability orientation. J Chem Phys 133:054702
31. Sung J, Park K, Kim D (2005) Surfaces of alcohol-water mixtures studied by sum-frequency
generation vibrational spectroscopy. J Phys Chem B 109:18507–18514
32. Wang H-F, Gan W, Lu R, Rao Y, Wu B-H (2005) Quantitative spectral and orientational
analysis in surface sum frequency generation vibrational spectroscopy (SFG-VS). Int Rev
Phys Chem 24:191–256
33. Wang J, Chen X, Clarke ML, Chen Z (2005) Detection of chiral sum frequency generation
vibrational spectra of proteins and peptides at interfaces in situ. Proc Natl Acad Sci U S A
102:4978–4983
34. Wang L, Ishiyama T, Morita A (2017) Theoretical investigation of C–H vibrational spectroscopy. 1. Modeling of methyl and methylene groups of ethanol with different conformers. J
Phys Chem A 121:6687–6700
35. Wang L, Ishiyama T, Morita A (2017) Theoretical investigation of C–H vibrational spectroscopy. 2. Unified assignment method of IR, Raman and SFG spectra of ethanol. J Phys
Chem A 121:6701–6712
36. Wu H, Zhang W-K, Gan W, Cui Z-F, Wang H-F (2006) An empirical approach to the bond
additivity model in quantitative interpretation of sum frequency generation vibrational spectra.
J Chem Phys 125:133203
37. Yan ECY, Fu L, Wang Z, Liu W (2014) Biological macromolecules at interfaces probed by
chiral vibrational sum frequency generation spectroscopy. Chem Rev 114:8471–8498
38. Zhang TG, Zhang CH, Wong GK (1990) Determination of molecular orientation in molecular
monolayers by second-harmonic generation. J Opt Soc Am B 7:902–907
39. Zhang D, Gutow JH, Eisenthal KB, Heinz TF (1993) Sudden structural change at an air/binary
liquid interface: sum frequency study of the air/acetonitrile-water interface. J Chem Phys
98:5099–5101
40. Zhang D, Gutow J, Eisenthal KB (1994) Vibrational spectra, orientations, and phase transitions
in long-chain amphiphiles at the air/water interface: probing the head and tail groups by sum
frequency generation. J Phys Chem 98:13729–13734
41. Zhang D, Gutow JH, Eisenthal KB (1996) Structural phase transition of small molecules at
air/water interfaces. J Chem Soc Faraday Trans 92:539–543
