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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 52, 1984 - Issue 3
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Original Articles

Ionic mobility and dielectric relaxation in supercooled liquid KCl-glycerol solutions

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Pages 509-523 | Received 11 Oct 1983, Accepted 22 Jan 1984, Published online: 22 Aug 2006

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Read on this site (5)

S.S.N. Murthy. (1996) Experimental study of dielectric relaxation in supercooled alcohols and polyols. Molecular Physics 87:3, pages 691-709.
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M.C. Blanco, D.C. Champeney & M. Kameche. (1989) Ionic Molar Conductivities in Solutions of KCl, NaCl and LiCl in Glycerol at 25°C. Physics and Chemistry of Liquids 19:3, pages 163-169.
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D.C. Champeney & H. Comert. (1988) Transference Numbers and Activity Coefficients of Solutions of KCI and NaCI in Glycerol Using Concentration Cells. Physics and Chemistry of Liquids 18:1, pages 43-52.
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D.C. Champeney & F. Ould-kaddour. (1987) Conductance of KCI-Glycerol Solutions: Test of the Fuoss Paired Ion Model. Physics and Chemistry of Liquids 16:4, pages 239-247.
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Articles from other publishers (26)

Fatima Moulay, M’hamed Mehouen & Mostefa Kameche. (2020) Transport properties of lithium-ion in green nonaqueous solutions and polymer ionic exchange membranes: an attempt to elaboration of ecological Li-ion battery. SN Applied Sciences 2:10.
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Gennadiy I. Egorov & Dmitriy M. Makarov. (2014) Volumetric properties of binary liquid-phase mixture of (water+glycerol) at temperatures of (278.15 to 323.15)K and pressures of (0.1 to 100)MPa. The Journal of Chemical Thermodynamics 79, pages 135-158.
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Gennadiy I. Egorov, Dmitriy M. Makarov & Arkadiy M. Kolker. (2013) Volume properties of liquid mixture of water+glycerol over the temperature range from 278.15 to 348.15K at atmospheric pressure. Thermochimica Acta 570, pages 16-26.
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J. J. Towey & L. Dougan. (2011) Structural Examination of the Impact of Glycerol on Water Structure. The Journal of Physical Chemistry B 116:5, pages 1633-1641.
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J. J. Towey, A. K. Soper & L. Dougan. (2011) The structure of glycerol in the liquid state: a neutron diffraction study. Physical Chemistry Chemical Physics 13:20, pages 9397.
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Caisa Andersson, Anna Jonhed & Lars Järnström. (2008) Composition and Film Properties of Temperature Responsive, Hydrophobically Modified Potato Starch. Starch - Stärke 60:10, pages 539-550.
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Anna Jonhed, Caisa Andersson & Lars Järnström. (2007) Effects of film forming and hydrophobic properties of starches on surface sized packaging paper. Packaging Technology and Science 21:3, pages 123-135.
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Agneta Jansson & Lars Järnström. (2005) Barrier and mechanical properties of modified starches. Cellulose 12:4, pages 423-433.
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Denis Lourdin, Paul Colonna & Stephen G. Ring. (2003) Volumetric behaviour of maltose–water, maltose–glycerol and starch–sorbitol–water systems mixtures in relation to structural relaxation. Carbohydrate Research 338:24, pages 2883-2887.
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Timothy R Noel, Roger Parker & Stephen G Ring. (2003) Effect of molecular structure on the conductivity of amorphous carbohydrate–water–KCl mixtures in the supercooled liquid state. Carbohydrate Research 338:5, pages 433-438.
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Bradley R. Ringeisen, Annabel H. Muenter & Gilbert M. Nathanson. (2002) Collisions of HCl, DCl, and HBr with Liquid Glycerol:  Gas Uptake, D → H Exchange, and Solution Thermodynamics. The Journal of Physical Chemistry B 106:19, pages 4988-4998.
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R. Parker & S.G. Ring. (2001) Aspects of the Physical Chemistry of Starch. Journal of Cereal Science 34:1, pages 1-17.
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S.V. Lishchuk & N.P. Malomuzh. (1999) Cluster approach to the problems of diffusion and viscosity in supercooled states of glycerol-like liquids. Chemical Physics Letters 309:3-4, pages 307-313.
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Denis Lourdin, Stephen G Ring & Paul Colonna. (1998) Study of plasticizer–oligomer and plasticizer–polymer interactions by dielectric analysis: maltose–glycerol and amylose–glycerol–water systems. Carbohydrate Research 306:4, pages 551-558.
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Pirkko M. Forssell, Jaana M. Mikkilä, Graham K. Moates & Roger Parker. (1997) Phase and glass transition behaviour of concentrated barley starch-glycerol-water mixtures, a model for thermoplastic starch. Carbohydrate Polymers 34:4, pages 275-282.
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D. Lourdin, L. Coignard, H. Bizot & P. Colonna. (1997) Influence of equilibrium relative humidity and plasticizer concentration on the water content and glass transition of starch materials. Polymer 38:21, pages 5401-5406.
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Denis Lourdin, Hervé Bizot & Paul Colonna. (2011) Correlation between static mechanical properties of starch‐glycerol materials and low‐temperature relaxation. Macromolecular Symposia 114:1, pages 179-185.
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Daniel Kivelson, Gilles Tarjus, Xiaolin Zhao & Steven A. Kivelson. (1996) Fitting of viscosity: Distinguishing the temperature dependences predicted by various models of supercooled liquids. Physical Review E 53:1, pages 751-758.
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Timothy R. Noel, Roger Parker & Stephen G. Ring. (1996) Conductivity of maltose–water–KCl mixtures in the supercooled liquid and glassy states. J. Chem. Soc., Faraday Trans. 92:11, pages 1921-1926.
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W. Tandy Grubbs & Richard A. MacPhail. (1994) Dynamics in supercooled glycerol by high resolution stimulated Brillouin gain spectroscopy. The Journal of Chemical Physics 100:4, pages 2561-2570.
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W. Tandy Grubbs & Richard A. MacPhail. (1994) High resolution stimulated Brillouin gain spectrometer. Review of Scientific Instruments 65:1, pages 34-41.
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A. R. Kirby, S. A. Clark, R. Parker & A. C. Smith. (2004) The deformation and failure behaviour of wheat starch plasticized with water and polyols. Journal of Materials Science 28:21, pages 5937-5942.
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Fouzia Ould-Kaddour & Jean-Louis Barrat. (1992) Molecular-dynamics investigation of tracer diffusion in a simple liquid. Physical Review A 45:4, pages 2308-2314.
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Kelsey D. Cook, Peter J. Todd & Daniel H. Friar. (1989) Physical properties of matrices used for fast atom bombardment. Biological Mass Spectrometry 18:7, pages 492-497.
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L. Boehm, D.L. Smith & C.A. Angell. (1987) Far infrared and dielectric relaxation spectra in supercooled water and water + propylene glycol solutions. Journal of Molecular Liquids 36, pages 153-166.
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Ryusuke Nozaki & Satoru Mashimo. (1986) Anomalous dielectric behavior of poly(vinyl acetate) below glass transition temperature. The Journal of Chemical Physics 84:6, pages 3575-3576.
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