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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 30, 1975 - Issue 6
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Original Articles

The fluctuation hypothesis of hydrogen bonding

I. General discussion

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Pages 1621-1625 | Received 03 Dec 1974, Published online: 23 Aug 2006

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Read on this site (9)

MarekJ. Wójcik. (1978) Fermi resonance in dimers : a model study. Molecular Physics 36:6, pages 1757-1767.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (1978) The fluctuation hypothesis of hydrogen bonding. Molecular Physics 36:4, pages 973-992.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (1977) The fluctuation hypothesis of hydrogen bonding. Molecular Physics 33:3, pages 779-792.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (1977) The fluctuation hypothesis of hydrogen bonding. Molecular Physics 33:3, pages 759-778.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (1975) The fluctuation hypothesis of hydrogen bonding. Molecular Physics 30:6, pages 1635-1648.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (1975) The fluctuation hypothesis of hydrogen bonding. Molecular Physics 30:6, pages 1627-1633.
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Articles from other publishers (38)

Helmut Schäfer, Anja Schuster, Stefan Kunis, Tom Bookholt, Jörg Hardege, Klara Rüwe & Julia Brune. (2023) The Readiness of Water Molecules to Split into Hydrogen + Oxygen: A Proposed New Aspect of Water Splitting. Advanced Materials 35:30.
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Jose M. AlíaHowell G. M. Edwards. (2005) Vibrational Spectroscopic Properties of Hydrogen Bonded Acetonitrile Studied by DFT. The Journal of Physical Chemistry A 109:35, pages 7977-7987.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (2005) Thermodynamic functions of liquid water calculated from the temperature evolution of the vibration spectrum contour. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 61:8, pages 1789-1794.
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Yu.Ya. Efimov & Yu.I. Naberukhin. (2002) On the interrelation between frequencies of stretching and bending vibrations in liquid water. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 58:3, pages 519-524.
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Yu. Ya. Efimov & Yu. I. Naberukhin. (2000) Stretching frequency distribution and hydrogen bond thermodynamics in water as calculated from ir spectra using the fluctuation model. Journal of Structural Chemistry 41:3, pages 433-439.
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Yu.Ya Efimov. (2000) Digital iterative deconvolution procedure (DIDP) and its smoothing properties to treat with experimental spectra. Vibrational Spectroscopy 23:1, pages 57-69.
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Fernando Rull & Hitoshi Ohtaki. (1997) Raman spectral studies on ionic interaction in aqueous alkali sulfate solutions. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 53:5, pages 643-653.
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Hristo Palamarev & Georgy Georgiev. (1996) Characterization of OH-stretching vibration in HOD based on the fluctuation model of hydrogen bonds and derived structural data. Journal of Molecular Structure: THEOCHEM 378:3, pages 237-248.
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Hristo Palamarev & Georgy Georgiev. (1996) Characterization of OH-stretching vibration in HOD based on the fluctuation model of hydrogen bonds and derived structural data. Journal of Molecular Structure 378:3, pages 237-248.
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Hristo Palamarev & Georgy Georgiev. (1994) Statistical distribution of hydrogen-bonded OH oscillators in HOD on the basis of infrared spectra. Vibrational Spectroscopy 7:3, pages 255-264.
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A. Bertoluzza, C. Fagnano, M.A. Morelli, A. Tinti & M.R. Tosi. (1993) The role of water in biological systems. Journal of Molecular Structure 297, pages 425-437.
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G.V. Yukhnevich, B.P. Shelyukhaev, G.B. Seifer & O.Yu. Tsoi. (1992) Electro-optical parameters of hydrogen-bonded water molecules. Journal of Molecular Structure 272, pages 211-234.
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Dimitri E. Khoshtariya & Nina O. Berdzenishvili. (1992) A new dynamic elementary act model for thermal and photoinduced proton self-exchange through the lyate ion hydrogen bridges in solutions. Chemical Physics Letters 196:6, pages 607-613.
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Yu. Ya. Efimov. (1992) Nature of the broadening, the form of the spectral bands, and thev AH ? RA...B correlation in liquids with hydrogen bonds. Journal of Structural Chemistry 32:6, pages 834-841.
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André Burneau. (1990) Near infrared spectroscopic study of the structures of water in proton acceptor solvents.. Journal of Molecular Liquids 46, pages 99-127.
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Yu.Ya. Efimov. (1990) Ensembles of hydrogen bonds in liquids, ice nuclei, and in computer modeling. Journal of Molecular Structure 237, pages 93-103.
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Michael Falk. (2005) Frequencies of HOH, HOD and DOD bending fundamentals in liquid water. Journal of Raman Spectroscopy 21:9, pages 563-567.
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B. Gellai. (1990) Model computation of the stretching mode spectra of liquid HDO at 25°, 100° and 200 °C. Journal of Molecular Liquids 45:3-4, pages 283-295.
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Yoshitaka Fujita & Shun-ichi Ikawa. (1989) Effect of temperature on the hydrogen bond distribution in water as studied by infrared spectra. Chemical Physics Letters 159:2-3, pages 184-188.
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V. Zhelyaskov, G. Georgiev, Zh. Nickolov & M. Miteva. (1989) Concentration (D2O in H2O) and temperature Raman study of the molecular interactions in the OD stretching spectra of D2O and D2O/H2O mixtures using the fourier deconvolution technique. Journal of Raman Spectroscopy 20:2, pages 67-75.
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M.I.S. Sastry & Surjit Singh. (1987) Derivative analysis of Raman spectra of liquid water in the OH (D) stretching region. Journal of Molecular Structure 158, pages 195-204.
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T.A. Iskanderov, Ya.M. Kimel'fel'd & E.M. Smirnova. (1987) Infrared spectroscopic studies of hydrogen-bonded complexes in cryogenic sulutions. Chemical Physics 112:3, pages 379-386.
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Eugene S. Kryachko. (1986) On the red shift of OH stretching region vibrations in ice and water. International Journal of Quantum Chemistry 30:4, pages 495-508.
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Yu.Ya. Efimov. (1986) Intermolecular interaction fluctuations, vibrational coupling and spectral band shapes for liquid water. Journal of Molecular Structure 141, pages 419-422.
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L. Soulard & F. Fillaux. (1985) Infrared band-shape analysis and hydrogen-bonding dynamics of the HCOOH low-temperature crystal. Chemical Physics 100:3, pages 355-363.
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V.P. Sakun. (1985) Vibrational relaxation and νs(AH) absorption band profiles of weak hydrogen-bonded complexes in liquids. Chemical Physics 99:3, pages 457-466.
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N.D. Sokolov. (1984) On the mechanism of the broadening of the proton vibrational IR band in weak hydrogen bonds. Double adiabatic approximation. Journal of Molecular Liquids 29:4, pages 231-242.
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F. Fillaux. (1983) Theoretical model for calculations of infrared and Raman band profiles of strong hydrogen bonds in ordered media. Chemical Physics 74:3, pages 395-404.
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Yu. Ya. Efimov. (1982) Intramolecular vibrations in ice. Interpretation of experiments on the isotopic isolation of H2O molecules. Journal of Structural Chemistry 23:3, pages 407-414.
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Yu. I. Naberukhin. (1982) What is the structure of a liquid?. Journal of Structural Chemistry 22:6, pages 850-864.
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G. Kabisch. (1981) Intermolecular coupling of bending vibrations in liquid water. Journal of Molecular Structure 77:3-4, pages 219-226.
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A. P. Zhukovskii. (1981) Justification of the continuous model of the structure of water by infrared spectroscopy. Journal of Structural Chemistry 22:3, pages 356-362.
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Yu. Ya. Efimov & Yu. I. Naberukhin. (1980) Justification for the continuous model of the structure of liquid water from an analysis of the temperature dependence of the vibrational spectra. Journal of Structural Chemistry 21:3, pages 328-336.
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J.J.C. Teixeira-Dias. (1979) The Raman spectra of bromoform. Spectrochimica Acta Part A: Molecular Spectroscopy 35:7, pages 857-859.
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Marek J. Wójcik & Michael Falk. (1978) Band shapes of infrared absorption spectra of isotopically diluted XH groups in hydrogen-bonded crystals. Chemical Physics Letters 56:3, pages 450-454.
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Marek J. Wojcik. (2009) Theoretical interpretation of the infrared spectra of the hydrogen bond. International Journal of Quantum Chemistry 14:S12, pages 219-231.
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Paolo Teragni, Giorgio Masetti & Giuseppe Zerbi. (1978) Infrared spectra of hydrogen bonded organic molecules in the solid state: Width of OH stretching and librational modes in acetic acid. Chemical Physics 28:1-2, pages 55-72.
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H. Romanowski & L. Sobczyk. (1977) A stochastic approach to their IR spectra of the symmetrical OHO hydrogen bond. Chemical Physics 19:3, pages 361-370.
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