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同分异构体对苯和丁醇的偶极相互作用的影响
作者姓名:ARUL  G.  JAAFAR  Mohamad  Suhaimi  PALANIAPPAN  L.
作者单位:Department of Physics, Sri Venkateswara College of Engineering & Technology, Thiruvallur, Chennai, TN, India; School of Physics, Universiti Sains Malaysia, Pulau Penang 11800, Malaysia
摘    要:Sound velocity, density, and viscosity values were measured at 303 K in four binary systems of benzene +1-, 2-, tert-, or iso-butanol. From these data, acoustical parameters, such as adiabatic compressibility, free length, free volume, and internal pressure were estimated using the standard relations. The results are interpreted in terms of molecular interaction between the components of the mixtures. Observed excess value in all the mixture indicates that the molecular symmetry existing in the system is highly disturbed by the nonpolar benzene molecules. Interaction energy terms of the statistical mixing are also verified for these binary systems and the dipole-dipole interactions are found to be predominantly present and are sharply affected by the isomeric forms of butanol.

关 键 词:Ultrasonic  velocity  Acoustic  parameter  Dipolar  interaction  Interaction  同分异构体  丁醇  偶极相互作用  影响  Butanol  Benzene  Interaction  energy  statistical  mixing  interactions  present  forms  butanol  value  mixtures  molecular  interaction  symmetry  system  disturbed
收稿时间:2007-09-05
修稿时间:2007-11-27

Effect of Isomerism in the Dipolar Interaction of Benzene with Butanol
ARUL G. JAAFAR Mohamad Suhaimi PALANIAPPAN L..Effect of Isomerism in the Dipolar Interaction of Benzene with Butanol[J].Acta Physico-Chimica Sinica,2008,24(1):41-46.
Authors:ARUL G  JAAFAR Mohamad Suhaimi  PALANIAPPAN L
Institution:Department of Physics, Sri Venkateswara College of Engineering & Technology, Thiruvallur, Chennai, TN, India; School of Physics, Universiti Sains Malaysia, Pulau Penang 11800, Malaysia
Abstract:Sound velocity, density, and viscosity values were measured at 303 K in four binary systems of benzene 1-, 2-, tert-, or iso-butanol. From these data, acoustical parameters, such as adiabatic compressibility, free length, free volume, and internal pressure were estimated using the standard relations. The results are interpreted in terms of molecular interaction between the components of the mixtures. Observed excess value in all the mixture indicates that the molecular symmetry existing in the system is highly disturbed by the nonpolar benzene molecules. Interaction energy terms of the statistical mixing are also verified for these binary systems and the dipole-dipole interactions are found to be predominantly present and are sharply affected by the isomeric forms of butanol.
Keywords:Ultrasonic velocity  Acoustic parameter  Dipolar interaction  Interaction
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