Surface dilational rheology of mixed adsorption layers at liquid interfaces

The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to analyse the resulting data on the basis of a theoretical model. Models by Jiang et al., Joos, and by Lucassen and van den Tempel (for single...

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Vydané v:Advances in colloid and interface science Ročník 122; číslo 1; s. 57 - 66
Hlavní autori: Aksenenko, E.V., Kovalchuk, V.I., Fainerman, V.B., Miller, R.
Médium: Journal Article Konferenčný príspevok..
Jazyk:English
Vydavateľské údaje: Amsterdam Elsevier B.V 25.09.2006
Elsevier
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ISSN:0001-8686, 1873-3727
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Abstract The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to analyse the resulting data on the basis of a theoretical model. Models by Jiang et al., Joos, and by Lucassen and van den Tempel (for single compounds) are compared here and applied to experimental data. The mentioned models converge to each other after some small modifications and represent a very good scientific background for studies of the mechanical behaviour of mixed adsorption layers. As example, the experimental results for mixed solutions containing a globular protein (β-lactoglobulin) and a non-ionic surfactant (alkyl dimethyl phosphine oxide) are analysed by the obtained dependencies, using some new proposed numerical procedures.
AbstractList The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to analyse the resulting data on the basis of a theoretical model. Models by Jiang et al., Joos, and by Lucassen and van den Tempel (for single compounds) are compared here and applied to experimental data. The mentioned models converge to each other after some small modifications and represent a very good scientific background for studies of the mechanical behaviour of mixed adsorption layers. As example, the experimental results for mixed solutions containing a globular protein (beta-lactoglobulin) and a non-ionic surfactant (alkyl dimethyl phosphine oxide) are analysed by the obtained dependencies, using some new proposed numerical procedures.The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to analyse the resulting data on the basis of a theoretical model. Models by Jiang et al., Joos, and by Lucassen and van den Tempel (for single compounds) are compared here and applied to experimental data. The mentioned models converge to each other after some small modifications and represent a very good scientific background for studies of the mechanical behaviour of mixed adsorption layers. As example, the experimental results for mixed solutions containing a globular protein (beta-lactoglobulin) and a non-ionic surfactant (alkyl dimethyl phosphine oxide) are analysed by the obtained dependencies, using some new proposed numerical procedures.
The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to analyse the resulting data on the basis of a theoretical model. Models by Jiang et al., Joos, and by Lucassen and van den Tempel (for single compounds) are compared here and applied to experimental data. The mentioned models converge to each other after some small modifications and represent a very good scientific background for studies of the mechanical behaviour of mixed adsorption layers. As example, the experimental results for mixed solutions containing a globular protein (beta-lactoglobulin) and a non-ionic surfactant (alkyl dimethyl phosphine oxide) are analysed by the obtained dependencies, using some new proposed numerical procedures.
The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to analyse the resulting data on the basis of a theoretical model. Models by Jiang et al., Joos, and by Lucassen and van den Tempel (for single compounds) are compared here and applied to experimental data. The mentioned models converge to each other after some small modifications and represent a very good scientific background for studies of the mechanical behaviour of mixed adsorption layers. As example, the experimental results for mixed solutions containing a globular protein (β-lactoglobulin) and a non-ionic surfactant (alkyl dimethyl phosphine oxide) are analysed by the obtained dependencies, using some new proposed numerical procedures.
Author Fainerman, V.B.
Kovalchuk, V.I.
Miller, R.
Aksenenko, E.V.
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  surname: Aksenenko
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  givenname: V.I.
  surname: Kovalchuk
  fullname: Kovalchuk, V.I.
  organization: Institute of Biocolloid Chemistry, 42 Vernadsky Avenue, 03680 Kyiv (Kiev), Ukraine
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  surname: Fainerman
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  givenname: R.
  surname: Miller
  fullname: Miller, R.
  email: miller@mpikg.mpg.de
  organization: Max-Planck-Institut für Kolloid- und Grenzflächenforschung, Am Mühlenberg 1, 14424 Potsdam, Germany
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Issue 1
Keywords Gas liquid interface
Viscoelasticity
Elastic modulus
Rheology
Non ionic surfactant
Review
Surfactant
Protein
Binary mixture
Adsorption
Lactoglobulins
Aqueous solution
Rheological properties
Language English
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Snippet The dilational rheology for mixed solutions of surface active compounds is easy to measure with existing methods, however, there are very few attempts only to...
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StartPage 57
SubjectTerms Adsorption
Chemistry
Chemistry, Physical - methods
Colloids - chemistry
Elasticity
Exact sciences and technology
Gas-liquid interface and liquid-liquid interface
General and physical chemistry
Ions - chemistry
Lactoglobulins - chemistry
Models, Chemical
Models, Statistical
Models, Theoretical
Proteins - chemistry
Rheology - methods
Surface physical chemistry
Surface Properties
Surface-Active Agents - chemistry
Title Surface dilational rheology of mixed adsorption layers at liquid interfaces
URI https://dx.doi.org/10.1016/j.cis.2006.06.012
https://www.ncbi.nlm.nih.gov/pubmed/16884674
https://www.proquest.com/docview/68813885
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