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Original Articles

Acoustic, volumetric and spectroscopic properties of formamide + N-methylformamide + 2-chloroethanol at different temperatures

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Pages 320-330 | Received 04 Apr 2013, Accepted 20 Jul 2013, Published online: 27 Sep 2013

References

  • Lagemann RT, Dunbar WS. Relationships between the velocity of sound and other physical properties of liquids. J Phys Chem. 1945;49:428–436.
  • Maravkova L, Linek J. Excess molar volumes of (benzene + isopropylbenzene, or 1,3,5-trimethylbenzene, or 1,2,4-trimethylbenzene) at temperatures between 298.15 K and 328.15 K. J Chem Thermodyn. 2003;35:1139–1149.
  • Yang C, Liu Z, Lei H, Ma P. Excess molar volumes and viscosities of binary mixtures of p-cresol with ethylene glycol and methanol at different temperature and atmospheric pressure. J Chem Eng Data. 2006;51:457–461.
  • Awasthi A, Acoustic AA. Volumetric, and spectroscopic studies of formamide with 2-alkoxyethanols at different temperatures. J Chem Thermodyn. 2012;53:144–151.
  • Awasthi A, Awasthi A. Intermolecular interactions in formamide + 2-alkoxyethanols: viscometric study. Thermochim Acta. 2012;537:57–64.
  • Awasthi A, Awasthi A. Intermolecular interaction in binary mixtures of Formamide with 2-alkoxyethanol at different temperatures: optical and Internal pressure study. Phys Chem Liq. 2013;51:112–123.
  • Awasthi A, Tripathi BS, Awasthi A. Applicability of corresponding-states group-contribution methods for the estimation of surface tension of multicomponent liquid mixtures at 298.15K. Fluid Phase Equilibria. 2010;287:151–154.
  • Awasthi A, Tripathi BS, Awasthi A. Study of molecular properties using acoustic non-linearity parameter in the ternary liquid mixtures at different temperatures. Phys Chem Liq. 2010;48:587–600.
  • Tripathi BS, Awasthi A, Awasthi A. Study of molecular properties using acoustic non-linearity parameter in the ternary liquid mixtures at different temperatures. Can J Phys. 2010;88:283–292.
  • Iloukhani H, Volumetric GR. Properties of N,N-dimethylformamide with 1,2-alkanediols at 20°C. J Solut Chem. 1998;27:141–149.
  • Riddick JA, Bunger WB, Sakano T. Organic solvents: physical properties and methods of purification. New York (NY): Wiley Interscience; 1986.
  • Vogel AI. Text book of practical organic chemistry. London: Longman Green; 1989.
  • Cases AM, Marigliano ACG, Bonatti CM, Solimo HN. Density, viscosity, and refractive index of formamide, three carboxylic acids, and formamide + carboxylic acid binary mixtures. J Chem Eng Data. 2001;46:712–715.
  • Papamatthaiakis D, Aroni F, Havredaki V. Isentropic compressibilities of (amide + water) mixtures: a comparative study. J Chem Thermodyn. 2008;40:107–118.
  • Roy MN, Sarkar BK, Viscosity CR. Density, and speed of sound for the binary mixtures of formamide with 2-methoxyethanol, acetophenone, acetonitrile, 1,2-dimethoxyethane, and dimethylsulfoxide at different temperatures. J Chem Eng Data. 2007;52:1630–1637.
  • Islam MN, Ali MA, Islam MM, Nahar MK. Volumetric and viscometric properties of aqueous solutions of N-methylformamide, 1,2-diaminopropane and 2-methylpropane-2-ol. Phys Chem Liq. 2003;41:271–282.
  • Ferrari G, Foca G, Manfredini M, Manzini D, Marchetti A, Tassi L, Ulrici A. Density and volume properties of the 2-chloroethanol + 2-methoxyethanol + 1,2-dimethoxyethane ternary solvent system at different temperatures. J Solut Chem. 2003;32:93–116.
  • Nain AK. Molecular interactions in binary mixtures of formamide with 1-butanol, 2-butanol, 1,3-butanediol and 1,4-butanediol at different temperatures: an ultrasonic and viscometric study. Fluid Phase Equilibria. 2008;265:46–56.
  • Baragi JG, Aralaguppi MI, Aminabhavi TM, Kariduraganavar MY, Kittur A. Density, viscosity, refractive index, and speed of sound for binary mixtures of anisole with 2-chloroethanol, 1,4-dioxane, tetrachloroethylene, tetrachloroethane, DMF, DMSO, and diethyl oxalate at (298.15, 303.15, and 308.15) K. J Chem Eng Data. 2005;50:910–916.
  • Awasthi A, Rastogi M, Shukla JP. Ultrasonic and IR study of molecular association process through hydrogen bonding in ternary liquid mixtures. Fluid Phase Equilibria. 2004;215:119–127.
  • Rastogi M, Awasthi A, Gupta M, Shukla JP. Molecular association of aliphatic ketones and phenol in a nonpolar solvents-ultrasonic and IR study. J Mol Liq. 2003;107:185–204.
  • Awasthi A, Shukla JP. Ultrasonic and IR study of intermolecular association through hydrogen bonding in ternary liquid mixtures. Ultrasonics. 2003;41:477–486.
  • Thanuja B, Nithya G, Kanagam CC. Ultrasonic studies of intermolecular interactions in binary mixtures of 4-methoxy benzoin with various solvents: excess molar functions of ultrasonic parameters at different concentrations and in different solvents. Ultrason Sonochem. 2012;19:1213–1220.
  • Eyring H, Kinkaid JF. Free volume and free angle ratios of molecules in liquids. J Chem Phys. 1938;6:620–629.
  • Fort RJ, Moore WR. Adiabatic compressibilities of binary liquid mixtures. Trans Faraday Soc. 1965;61:2102–2111.
  • Peterson RC. Interactions in the binary liquid system N,N-Dimethylacetamide – water: viscosity and density. J Phys Chem. 1960;64:184–185.
  • Dyer JR. Applications of absorption spectroscopy of organic compounds. New Delhi: Prentice-Hall of India; 1978.
  • Raj AME, Resmi LB, Jothy VB, Jayachandran M, Sanjeeviraja C. Ultrasonic study on binary mixture containing dimethylformamide and methanol over the entire miscibility range (0 < x < 1) at temperatures 303–323 K. Fluid Phase Equilibria. 2009;281:78–86.
  • Hasan M, Sawant AB, Sawant RB, Loke PG. Densities, viscosities, speed of sound, and IR spectroscopic studies of binary mixtures of tert-butyl acetate with benzene, methylbenzene, and ethylbenzene at T = (298.15 and 308.15) K. J Chem Thermodyn. 2011;43:1389–1394.

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