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Temperature dependence of Kerr coefficient of binary liquid mixtures of aprotic-aprotic molecules
, T. A. Prasadarao
Published in Gordon & Breach Science Publ Inc, Newark
2000
Volume: 38
   
Issue: 1
Pages: 35 - 47
Abstract
The electro optical Kerr coefficients of binary liquid mixtures, comprising of aprotic-aprotic molecules only, are measured over the temperature range of 286 K to 315 K. To with in experimental errors, the logarithm of Kerr coefficient can be expressed as Van't Hoff type expression to the reciprocal of temperature. Information on the interaction energy between the constituents of the binary mixtures is thereby obtained. It is found that the interaction energy in aromatic ketone-aliphatic nitrile binary mixtures is comparatively higher than in the binary mixtures with aliphatic ketone-aliphatic nitriles, aromatic ketone-aromatic nitrile and aromatic ketone-aliphatic ketones components. This is attributed to the dipole-dipole interaction existing between the components of the binary mixtures.The electro optical Kerr coefficients of binary liquid mixtures, comprising of aprotic-aprotic molecules only, are measured over the temperature range of 286 K to 315 K. To with in experimental errors, the logarithm of Kerr coefficient can be expressed as Van't Hoff type expression to the reciprocal of temperature. Information on the interaction energy between the constituents of the binary mixtures is thereby obtained. It is found that the interaction energy in aromatic ketone-aliphatic nitrile binary mixtures is comparatively higher than in the binary mixtures with aliphatic ketone-aliphatic nitriles, aromatic ketone-aromatic nitrile and aromatic ketone-aliphatic ketones components. This is attributed to the dipole-dipole interaction existing between the components of the binary mixtures.
About the journal
JournalPhysics and Chemistry of Liquids
PublisherGordon & Breach Science Publ Inc, Newark
ISSN00319104
Open AccessNo
Concepts (12)
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    Aromatic hydrocarbons
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    KERR ELECTROOPTICAL EFFECT
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    Ketones
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    Liquids
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    Thermal effects
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    APROTIC LIQUIDS
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    INTERACTION ENERGY
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    Binary mixtures
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    Binary mixture
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    ELECTRO-OPTICAL TECHNIQUE
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    Interaction
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    LIQUID-LIQUID MIXING