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GLYCEROL: TERMS, PROPERTIES, CONSTANTS , FORMULAS

Saratov State University. Optics & Biomedical Physics Department. GLYCEROL: TERMS, PROPERTIES, CONSTANTS , FORMULAS. Mikhail M. Stolnitz Saratov State University, Saratov, Russia. Itroduction.

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GLYCEROL: TERMS, PROPERTIES, CONSTANTS , FORMULAS

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  1. Saratov State University Optics & Biomedical Physics Department GLYCEROL:TERMS, PROPERTIES,CONSTANTS, FORMULAS Mikhail M. Stolnitz Saratov State University, Saratov, Russia

  2. Saratov Fall Meeting 2016

  3. Itroduction “Our aim in this compilation is to present the more important of the available data on glycerine and its aqueous solutions for ready reference...” [1] Saratov Fall Meeting 2016

  4. Nomenclature Glycerol is a simple polyol (sugar alcohol) compound. It is a colorless, odorless, viscous liquid that is widely used in pharmaceutical formulations. Glycerol has three hydroxyl groups that are responsible for its solubility in water and its hygroscopic nature [2]. IUPAC name: propane-1,2,3-triol Other names: glycerin, glycerine, propanetriol, 1,2,3-trihydroxypropane Glycerine (sometimes glycerin) is the term most often applied to the commercial product, which usually contains a small percentage of water. Glycerol (chemically, also 1,2,3-propanetriol) refers to the chemical compound and content in a formulation. specifically to the trihydric alcohol C3H5(OH)3. Structure of glycerol, skeletal formula Saratov Fall Meeting 2016

  5. Glycerolin Internet DataBases Saratov Fall Meeting 2016

  6. Glycerolin Internet DataBases Saratov Fall Meeting 2016

  7. References Physical Properties of Glycerine and Its Solutions. ‒ New York: Glycerine Producers' Association, 1963. ‒ 27 с. From Wikipedia, the free encyclopedia. https://en.wikipedia.org/wiki/Glycerol Quantities, Units and Symbols in Physical Chemistry. ‒ 3d Ed. ‒ Cambridge: IUPAC & RSC Publishing, 2007. ‒ 251 p. Abbas S. A., Sharma V. K., Patapoff T. W., Kalonia D. S. Solubilities and Transfer Free Energies of Hydrophobic Amino Acids in Polyol Solutions: Importance of the Hydrophobicity of Polyols // Journal of Pharmaceutical Sciences. ‒ 2011. ‒ Vol. 100, № 8. ‒ P. 3096-3104. Abe S., Takahashi H. A comparative study of the effects of dimethylsulfoxide and glycerol on the bicontinuous cubic structure of hydrated monoolein and its phase behavior // Chemistry and Physics of Lipids. ‒ 2007. ‒ Vol. 147, № 2. ‒ P. 59-68. Aberg C., Pairin C., Costa-Balogh F. O., Sparr E. Responding double-porous lipid membrane: Lyotropic phases in a polymer scaffold // Biochimica Et BiophysicaActa-Biomembranes. ‒ 2008. ‒ Vol. 1778, № 2. ‒ P. 549-558. Adamenko I. I., Bulavin L. A., Ilyin V., Zelinsky S. A., Moroz K. O. Anomalous behavior of glycerol-water solutions // Journal of Molecular Liquids. ‒ 2006. ‒ Vol. 127, № 1-3. ‒ P. 90-92. Adamenko I. I., Zelinsky S. O., Korolovich V. V. Thermodynamic Properties of Glycerol-Water Solution // Ukrainian Journal of Physics. ‒ 2007. ‒ Vol. 52, № 9. ‒ P. 855-859. Aghtar M., Strumpfer J., Othrich C., Schulten K., Kleinekathofer U. The FMO Complex in a Glycerol-Water Mixture // Journal of Physical Chemistry B. ‒ 2013. ‒ Vol. 117, № 24. ‒ P. 7157-7163. Aioanei D., Brucale M., Tessari I., Bubacco L., Samori B. Worm-Like Ising Model for Protein Mechanical Unfolding under the Effect of Osmolytes // Biophysical Journal. ‒ 2012. ‒ Vol. 102, № 2. ‒ P. 342-350. Aioanei D., Tessari I., Bubacco L., Samori B., Brucale M. Observing the osmophobic effect in action at the single molecule level // Proteins: Structure Function and Bioinformatics. ‒ 2011. ‒ Vol. 79, № 7. ‒ P. 2214-2223. Akinkunmi F. O., Jahn D. A., Giovambattista N. Effects of Temperature on the Thermodynamic and Dynamical Properties of Glycerol-Water Mixtures: A Computer Simulation Study of Three Different Force Fields // Journal of Physical Chemistry B. ‒ 2015. ‒ Vol. 119, № 20. ‒ P. 6250-6261. Alber C., Buraczewska-Norin I., Kocherbitov V., Saleem S., Loden M., Engblom J. Effects of water activity and low molecular weight humectants on skin permeability and hydration dynamics - a double-blind, randomized and controlled study // International Journal of Cosmetic Science. ‒ 2014. ‒ Vol. 36, № 5. ‒ P. 412-418. Albert S., Bauer T., Michl M., Biroli G., Bouchaud J. P., Loidl A., Lunkenheimer P., Tourbot R., Wiertel-Gasquet C., Ladieu F. Fifth-order susceptibility unveils growth of thermodynamic amorphous order in glass-formers // Science. ‒ 2016. ‒ Vol. 352, № 6291. ‒ P. 1308-1311. Albro M. B., Petersen L. E., Li R., Hung C. T., Ateshian G. A. Influence of the Partitioning of Osmolytes by the Cytoplasm on the Passive Response of Cells to Osmotic Loading // Biophysical Journal. ‒ 2009. ‒ Vol. 97, № 11. ‒ P. 2886-2893. Alekseev S. I., Szabo I., Ziskin M. C. Millimeter wave reflectivity used for measurement of skin hydration with different moisturizers // Skin Research and Technology. ‒ 2008. ‒ Vol. 14, № 4. ‒ P. 390-396. Saratov Fall Meeting 2016

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