264
11 Summary
5. Nagata Y, Ohto T, Backus EHG, Bonn M (2016) Molecular modeling of water interfaces: from
molecular spectroscopy to thermodynamics. J Phys Chem B 120:3785–3796
6. Nihonyanagi S, Ishiyama T, Lee T-K, Yamaguchi S, Bonn M, Morita A, Tahara T (2011)
Unified molecular view of air/water interface based on experimental and theoretical χ (2)
spectra of isotopically diluted water surface. J Am Chem Soc 133:16875–16880
7. Otsuki Y, Sugimoto T, Ishiyama T, Morita A, Watanabe K, Matsumoto Y (2017) Unveiling
subsurface hydrogen-bond structure of hexagonal water ice. Phys Rev B 96:115405
8. Reddy SK, Thiraux R, Rudd BAW, Lin L, Adel T, Joutsuka T, Geiger FM, Allen HC, Morita
A, Paesani F (2018) Bulk contributions modulate the sum-frequency generation spectra of
interfacial water on model sea-spray aerosols. Chem. https://doi.org/10.1016/j.chempr.2018.
04.007
9. Sánchez MA, Kling T, Ishiyama T, van Zadel M-J, Bisson PJ, Mezger M, Jochum MN, Cyran
JD, Smit WJ, Bakker HJ, Shultz MJ, Morita A, Donadio D, Nagata Y, Bonn M, Backus
EHG (2017) Experimental and theoretical evidence for bilayer-by-bilayer surface melting of
crystalline ice. Proc Natl Acad Sci 114:227–232
10. Shen YR (2016) Fundamentals of sum-frequency spectroscopy. Cambridge University Press,
Cambridge
11. Stiopkin IV, Weeraman C, Pieniazek PA, Shalhout FY, Skinner JL, Benderskii AV (2011)
Hydrogen bonding at the water surface revealed by isotopic dilution spectroscopy. Nature
474:192–195
12. Sulpizi M, Salanne M, Sprik M, Gaigeot M (2013) Vibrational sum frequency generation
spectroscopy of the water liquid-vapor interface from density functional theory-based molecular dynamics simulations. J Phys Chem Lett 4:83–87
13. Walker DS, Richmond GL (2007) Understanding the effects of hydrogen bonding at the vaporwater interface: vibrational sum frequency spectroscopy of H 2 O/HOD/D 2 O mixtures studied
using molecular dynamics simultions. J Phys Chem C 111:8321–8330
Précédent

- 273/273