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Estimation of mechanical strength of unilamellar and multilamellar AOT/Water vesicles and their rupture using micropipet aspiration

  • article
  • Bi-layer
  • chemistry
  • Dioctyl Sulfosuccinic Acid
  • docusate sodium
  • Dynamic structural changes
  • Expansion modulus
  • Ion exchange membranes
  • liposome
  • Mechanical properties
  • Mechanical strength
  • Membrane bending
  • membrane fluidity
  • Membrane rigidity
  • Membrane tension
  • Multi-lamellar vesicles
  • Multilamellar
  • New mechanisms
  • Rigidity
  • Size and shape
  • Size separation
  • Sodium
  • Sodium dioctyl sulfosuccinate
  • Sugar (sucrose)
  • Surface active agents
  • Surface-Active Agents
  • surfactant
  • Synchrotrons
  • Unilamellar
  • Unilamellar Liposomes
  • Unilamellar vesicle
  • Water
Publication Type  Journal Article
Year of Publication  2009
Authors  Sagar, G.H.; Bellare, J.R.
Journal Title  Journal of Physical Chemistry B
Volume  113
Issue  42
Pages  13805 - 13810
Journal Date  2009///
Key Words  Bi-layer; Dynamic structural changes; Expansion modulus; Mechanical strength; Membrane bending; Membrane rigidity; Membrane tension; Multi-lamellar vesicles; Multilamellar; New mechanisms; Size and shape; Sodium dioctyl sulfosuccinate; Unilamellar; Unilam
Notes  

Export Date: 23 March 2010Source: ScopusPubMed ID: 19764699

URL  http://www.scopus.com/inward/record.url?eid=2-s2.0-70350101422&partnerID=40&md5=f31306acd3ae57a72daadeea2ba1057a
DOI  10.1021/jp902909z
Citation Key  2022
Export  Tagged XML BibTex

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