218
8 Other Topics
8. Eftekhari-Bafrooei A, Borguet E (2011) Effect of electric fields on the ultrafast vibrational
relaxation of water at a charged solid-liquid interface as probed by vibrational sum frequency
generation. J Phys Chem Lett 2:1353–1358
9. Geiger FM (2009) Second harmonic generation, sum frequency generation, and χ (3) :
dissecting environmental interfaces with a nonlinear optical Swiss army knife. Annu Rev Phys
Chem 60:61–83
10. Giordmaine JA (1965) Nonlinear optical properties of liquids. Phys Rev 138:A1599–1606
11. Gonella G, Lütgebaucks C, de Beer AG, Roke S (2016) Second harmonic and sum-frequency
generation from aqueous interfaces is modulated by interference. J Phys Chem C 120:9165–
9173
12. Gragson DE, McCarty BM, Richmond GL (1997) Ordering of interfacial water molecules at
the charged air/water interface observed by vibrational sum frequency generation. J Am Chem
Soc 119:6144–6152
13. Haupert LM, Simpson GJ (2009) Chirality in nonlinear optics. Annu Rev Phys Chem 60:345–
365
14. Ishiyama T, Morita A (2009) Analysis of anisotropic local field in sum frequency generation
spectroscopy with the charge response kernel water model. J Chem Phys 131:244714
15. Jena KC, Covert PA, Hore DK (2011) The effect of salt on the water structure at a charged
solid surface: differentiating second- and third-order nonlinear contributions. J Phys Chem
Lett 2:1056–1061
16. Joutsuka T, Hirano T, Sprik M, Morita A (2018) Effect of third-order susceptibility in sum
frequency generation spectroscopy: molecular dynamics study in liquid water. Phys Chem
Chem Phys 20:3040–3053
17. Kriech MA, Conboy JC (2003) Label-free chiral detection of melittin binding to a membrane.
J Am Chem Soc 125:1148–1149
18. Myalitsin A, Urashima S, Nihonyanagi S, Yamaguchi S, Tahara T (2016) Water structure at
the buried silica/aqueous interface studied by heterodyne-detected vibrational sum-frequency
generation. J Phys Chem C 120:9357–9363
19. Ohno PE, Saslow SA, Wang H-F, Geiger FM, Eisenthal KB (2016) Phase-referenced nonlinear
spectroscopy of the α-quartz/water interface. Nat Commun 7:13587
20. Okuno M, Ishibashi T (2014) Chirality discriminated by heterodyne-detected vibrational sum
frequency generation. J Phys Chem Lett 5:2874–2878
21. Okuno M, Ishibashi T (2015) Heterodyne-detected achiral and chiral vibrational sum
frequency generation of proteins at air/water interface. J Phys Chem C 119:9947–9954
22. Okuno M, Ishibashi T (2015) Sensitive and quantitative probe of molecular chirality with
heterodyne-detected doubly resonant sum frequency generation spectroscopy. Anal Chem
87:10103–10108
23. Ong S, Zhao X, Eisenthal KB (1992) Polarization of water molecules at a charged interface:
second harmonic studies of the silica/water interface. Chem Phys Lett 191:327–335
24. Petralli-Mallow T, Wong TM, Byers JD, Yee HI, Hicks JM (1993) Circular dichroism
spectroscopy at interfaces: a surface second harmonic generation study. J Phys Chem 97:1383–
1388
25. Wen Y-C, Zha S, Liu X, Yang S, Guo P, Shi G, Fang H, Shen YR, Tian C-S (2016) Unveiling
microscopic structures of charged water interfaces bysurface-specific vibrational spectroscopy.
Phys Rev Lett 116:016101
26. 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
8 Other Topics
8. Eftekhari-Bafrooei A, Borguet E (2011) Effect of electric fields on the ultrafast vibrational
relaxation of water at a charged solid-liquid interface as probed by vibrational sum frequency
generation. J Phys Chem Lett 2:1353–1358
9. Geiger FM (2009) Second harmonic generation, sum frequency generation, and χ (3) :
dissecting environmental interfaces with a nonlinear optical Swiss army knife. Annu Rev Phys
Chem 60:61–83
10. Giordmaine JA (1965) Nonlinear optical properties of liquids. Phys Rev 138:A1599–1606
11. Gonella G, Lütgebaucks C, de Beer AG, Roke S (2016) Second harmonic and sum-frequency
generation from aqueous interfaces is modulated by interference. J Phys Chem C 120:9165–
9173
12. Gragson DE, McCarty BM, Richmond GL (1997) Ordering of interfacial water molecules at
the charged air/water interface observed by vibrational sum frequency generation. J Am Chem
Soc 119:6144–6152
13. Haupert LM, Simpson GJ (2009) Chirality in nonlinear optics. Annu Rev Phys Chem 60:345–
365
14. Ishiyama T, Morita A (2009) Analysis of anisotropic local field in sum frequency generation
spectroscopy with the charge response kernel water model. J Chem Phys 131:244714
15. Jena KC, Covert PA, Hore DK (2011) The effect of salt on the water structure at a charged
solid surface: differentiating second- and third-order nonlinear contributions. J Phys Chem
Lett 2:1056–1061
16. Joutsuka T, Hirano T, Sprik M, Morita A (2018) Effect of third-order susceptibility in sum
frequency generation spectroscopy: molecular dynamics study in liquid water. Phys Chem
Chem Phys 20:3040–3053
17. Kriech MA, Conboy JC (2003) Label-free chiral detection of melittin binding to a membrane.
J Am Chem Soc 125:1148–1149
18. Myalitsin A, Urashima S, Nihonyanagi S, Yamaguchi S, Tahara T (2016) Water structure at
the buried silica/aqueous interface studied by heterodyne-detected vibrational sum-frequency
generation. J Phys Chem C 120:9357–9363
19. Ohno PE, Saslow SA, Wang H-F, Geiger FM, Eisenthal KB (2016) Phase-referenced nonlinear
spectroscopy of the α-quartz/water interface. Nat Commun 7:13587
20. Okuno M, Ishibashi T (2014) Chirality discriminated by heterodyne-detected vibrational sum
frequency generation. J Phys Chem Lett 5:2874–2878
21. Okuno M, Ishibashi T (2015) Heterodyne-detected achiral and chiral vibrational sum
frequency generation of proteins at air/water interface. J Phys Chem C 119:9947–9954
22. Okuno M, Ishibashi T (2015) Sensitive and quantitative probe of molecular chirality with
heterodyne-detected doubly resonant sum frequency generation spectroscopy. Anal Chem
87:10103–10108
23. Ong S, Zhao X, Eisenthal KB (1992) Polarization of water molecules at a charged interface:
second harmonic studies of the silica/water interface. Chem Phys Lett 191:327–335
24. Petralli-Mallow T, Wong TM, Byers JD, Yee HI, Hicks JM (1993) Circular dichroism
spectroscopy at interfaces: a surface second harmonic generation study. J Phys Chem 97:1383–
1388
25. Wen Y-C, Zha S, Liu X, Yang S, Guo P, Shi G, Fang H, Shen YR, Tian C-S (2016) Unveiling
microscopic structures of charged water interfaces bysurface-specific vibrational spectroscopy.
Phys Rev Lett 116:016101
26. 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
