Surfactant multilamellar vesicles (SMLVs) play a key role in the formulation of many industrial products, such as detergents, foodstuff, and cosmetics. In this Letter, we present the first quantitative investigation of the flow behavior of single SMLVs in a shearing parallel plate apparatus. We found that SMLVs are deformed and oriented by the action of shear flow while keeping constant volume and exhibit complex dynamic modes (i.e., tumbling, breathing, and tank treading). This behavior can be explained in terms of an excess area (as compared to a sphere of the same volume) and of microstructural defects, which were observed by 3D shape reconstruction through confocal microscopy. Furthermore, the deformation and orientation of SMLVs scale with radius R in analogy with emulsion droplets and elastic capsules (instead of R3, such as in unilamellar vesicles). A possible application of the physical insight provided by this Letter is in the rationale design of processing methods of surfactant-based systems.

Shear-induced deformation of surfactant multilamellar vesicles / A., Pommella; Caserta, Sergio; V., Guida; Guido, Stefano. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 108:13(2012), pp. 138301-1-138301-4. [10.1103/PhysRevLett.108.138301]

Shear-induced deformation of surfactant multilamellar vesicles

CASERTA, Sergio;GUIDO, STEFANO
2012

Abstract

Surfactant multilamellar vesicles (SMLVs) play a key role in the formulation of many industrial products, such as detergents, foodstuff, and cosmetics. In this Letter, we present the first quantitative investigation of the flow behavior of single SMLVs in a shearing parallel plate apparatus. We found that SMLVs are deformed and oriented by the action of shear flow while keeping constant volume and exhibit complex dynamic modes (i.e., tumbling, breathing, and tank treading). This behavior can be explained in terms of an excess area (as compared to a sphere of the same volume) and of microstructural defects, which were observed by 3D shape reconstruction through confocal microscopy. Furthermore, the deformation and orientation of SMLVs scale with radius R in analogy with emulsion droplets and elastic capsules (instead of R3, such as in unilamellar vesicles). A possible application of the physical insight provided by this Letter is in the rationale design of processing methods of surfactant-based systems.
2012
Shear-induced deformation of surfactant multilamellar vesicles / A., Pommella; Caserta, Sergio; V., Guida; Guido, Stefano. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 108:13(2012), pp. 138301-1-138301-4. [10.1103/PhysRevLett.108.138301]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/455107
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