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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 43, 1981 - Issue 2
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Original Articles

A comparative study of the interaction-induced spectra of liquid CS2

III. Solutions

&
Pages 307-319 | Received 16 Sep 1980, Accepted 23 Dec 1980, Published online: 26 Oct 2007

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F. Strehle, Th. Dorfmüller & J. Samios. (1991) Concentration effects on collision-induced depolarized Rayleigh lineshapes in CS2/CCl4 mixtures. Molecular Physics 72:5, pages 993-997.
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S.-B. Zhu, J. Lee & G.W. Robinson. (1988) Molecular dynamics simulation of liquid carbon disulphide with a harmonic intramolecular potential. Molecular Physics 65:1, pages 65-75.
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P.A. Madden & T.I. Cox. (1985) Interaction-induced spectra of CO2 . Molecular Physics 56:1, pages 223-235.
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P.A. Madden & D.J. Tildesley. (1983) The interaction induced spectra of liquid CS2 . Molecular Physics 49:1, pages 193-219.
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K.E. Arnold, J. Yarwood & A.H. Price. (1983) Studies of molecular motions and interactions in acetonitrile. Molecular Physics 48:3, pages 451-469.
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P.A. Madden & T.I. Cox. (1981) A comparative study of the interaction-induced spectra of liquid CS2 . Molecular Physics 43:2, pages 287-305.
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Patrick S. Wray, Wayne E. Sinclair, John W. Jones, Graham S. Clarke & Douglas Both. (2015) The use of in situ near infrared imaging and Raman mapping to study the disproportionation of a drug HCl salt during dissolution. International Journal of Pharmaceutics 493:1-2, pages 198-207.
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M. Besnard, M. I. Cabaço, J. A. P. Coutinho & Y. Danten. (2013) Assessing the non-ideality of the CO2-CS2 system at molecular level: A Raman scattering study. The Journal of Chemical Physics 139:12.
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M. Besnard, M.I. Cabaço, J.A.P. Coutinho & Y. Danten. (2013) Why is the CO2–CS2 non-ideality larger than in CO2–CCl4? A Raman scattering study. Chemical Physics Letters 583, pages 49-53.
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Jiri Jonas. 1999. High Pressure Molecular Science. High Pressure Molecular Science 1 23 .
E. Fraga & G. R. Loppnow. (1998) Proteins as Solvents:  Blue Copper Proteins as a Molecular Ruler for Solvent Effects on Resonance Raman Intensities. The Journal of Physical Chemistry B 102:39, pages 7659-7665.
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Thomas Steffen, Nicole A. C. M. Meinders & Koos Duppen. (1998) Microscopic Origin of the Optical Kerr Effect Response of CS 2 −Pentane Binary Mixtures . The Journal of Physical Chemistry A 102:23, pages 4213-4221.
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Thomas Steffen & Koos Duppen. (1997) Analysis of nonlinear optical contributions to temporally two-dimensional Raman scattering. Chemical Physics Letters 273:1-2, pages 47-54.
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Keisuke Tominaga & Keitaro Yoshihara. (1996) Fifth-order nonlinear spectroscopy on the low-frequency modes of liquid CS2. The Journal of Chemical Physics 104:12, pages 4419-4426.
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Keisuke Tominaga & Keitaro Yoshihara. (1996) Temporally two-dimensional femtosecond spectroscopy of binary mixture of CS2. The Journal of Chemical Physics 104:3, pages 1159-1162.
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Anne B. Myers & Alan E. Johnson. (1996) Electronic and Vibrational Dephasing in Solution by Dynamic Symmetry Breaking. Electronic and Vibrational Dephasing in Solution by Dynamic Symmetry Breaking.
Alan E. Johnson & Anne B. Myers. (1996) Solvent Effects in the Raman Spectra of the Triiodide Ion:  Observation of Dynamic Symmetry Breaking and Solvent Degrees of Freedom. The Journal of Physical Chemistry 100:19, pages 7778-7788.
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Yoshitaka Fujita & Shun-ichi Ikawa. (1995) Molecular dynamics study of liquid carbon disulfide and benzene: Effect of pressure on the far-infrared collision-induced absorption. The Journal of Chemical Physics 103:22, pages 9580-9588.
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Yoshitaka Fujita & Shun-ichi Ikawa. (1995) High-pressure study of the far-infrared collision-induced absorption of nondipolar liquids. The Journal of Chemical Physics 103:10, pages 3907-3911.
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Minoru Kato & Yoshihiro Taniguchii. (1995) A hydrostatic optical cell with synthetic diamond windows for quantitative infrared measurements of fluids. Review of Scientific Instruments 66:8, pages 4333-4335.
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Evangelos Zoidis, Marcel Besnard & Jack Yarwood. (1995) An infrared study of the interaction-induced vibrational spectra of benzene in liquid binary mixtures containing CS2 and C6F6. Chemical Physics 196:3, pages 521-529.
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N. Pesce da Silveira, H. Stassen & Th. Dorfmüller. (1994) Line shape analysis of the depolarized Rayleigh spectra of CS2/PS mixtures. The Journal of Chemical Physics 101:11, pages 9370-9376.
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A. Hacura, K. Pasterny & F.G. Baglin. (1993) High pressure study of collision-induced light scattering in a CO2−Kr mixture. Spectrochimica Acta Part A: Molecular Spectroscopy 49:13-14, pages 2089-2092.
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A. Hacura, K. Pasterny & F. G. Baglin. 1992. Molecular Liquids: New Perspectives in Physics and Chemistry. Molecular Liquids: New Perspectives in Physics and Chemistry 415 421 .
Toshiaki Hattori & Takayoshi Kobayashi. (1991) Ultrafast optical Kerr dynamics studied with incoherent light. The Journal of Chemical Physics 94:5, pages 3332-3346.
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Jong-Ho Yoon, Andrzej Hacura & Frank G. Baglin. (1989) A theoretical intensity study of the interaction induced Raman spectra of the ν2(π u ) mode of CO2 between 100 and 3000 bars of pressure . The Journal of Chemical Physics 91:9, pages 5230-5238.
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Romana Frattini, Marco Sampoli & Renzo Vallauri. (1989) Collision induced contributions on Rayleigh and Raman allowed spectra from fluids composed of linear molecules : A comparison between experimental and computer simulation results.. Journal of Molecular Liquids 43, pages 293-313.
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J.P. Pinan-Lucarre, E. Dervil, J. Loisel & E. Dayan. (1989) Interaction-induced contributions from IR and raman forbidden bands: CS2 liquid mixtures. Chemical Physics Letters 161:4-5, pages 409-412.
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Aleksandra Borysow & Lothar Frommhold. 1989. Advances in Chemical Physics. Advances in Chemical Physics 439 505 .
K. L. C. Hunt, Y. Q. Liang & S. Sethuraman. (1988) Transient, collision-induced changes in polarizability for atoms interacting with linear, centrosymmetric molecules at long range. The Journal of Chemical Physics 89:12, pages 7126-7138.
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T. Bancewicz, W. Głaz & S. Kjelich. (1988) Theory of multipolar interaction-induced contributions to Rayleigh intensity scattered by fluids with linear centrosymmetric molecules. Chemical Physics 128:2-3, pages 321-334.
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X. Song, R. Frattini & J. Jonas. (1988) Density effects on collision induced Raman scattering in CO2–Ar and CO2–Xe mixtures. The Journal of Chemical Physics 89:1, pages 156-159.
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E. Dayan, E. Dervil, J. Loisel, J.P. Pinan-Lucarre & G. Tarjus. (1988) Interaction-induced vibrational spectra of liquid CS2 in various solvents. Concentration effect. Chemical Physics 119:1, pages 107-123.
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K. L. C. Hunt & J. E. Bohr. (1986) Field-induced fluctuation correlations and the effects of van der Waals interactions on molecular polarizabilities. The Journal of Chemical Physics 84:11, pages 6141-6150.
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B. Catlow & J. Yarwood. (1986) Interaction-induced far-infrared spectra of the halogens. Journal of Molecular Structure: THEOCHEM 135, pages 415-422.
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B. Hegemann & J. Jonas. (1985) Separation of temperature and density effects on collision-induced Rayleigh and Raman line shapes of liquid carbon disulfide. The Journal of Chemical Physics 82:7, pages 2845-2855.
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Paul A. Madden. 1985. Phenomena Induced by Intermolecular Interactions. Phenomena Induced by Intermolecular Interactions 643 659 .
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Branka M. Ladanyi & Nancy E. Levinger. (1984) Computer simulation of Raman scattering from molecular fluids. The Journal of Chemical Physics 81:6, pages 2620-2633.
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K. L. C. Hunt. (1984) Nonlocal polarizability densities and the effects of short-range interactions on molecular dipoles, quadrupoles, and polarizabilities. The Journal of Chemical Physics 80:1, pages 393-407.
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P. A. Madden. 1984. Molecular Liquids. Molecular Liquids 431 474 .
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Shmuel Weiss & Uri Dinur. (1983) Enhancement by polar solute of interaction-induced IR absorption in liquid CS2. Chemical Physics Letters 99:3, pages 197-200.
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A.D. Buckingham, P.A. Galwas & Liu Fan-Chen. (1983) Polarizabilities of interacting polar molecules. Journal of Molecular Structure 100, pages 3-12.
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