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Mendeleev Communications, 2004, Volume 14, Issue 2, Pages 66–69
DOI: https://doi.org/10.1070/MC2004v014n02ABEH001824
(Mi mendc3809)
 

This article is cited in 29 scientific papers (total in 29 papers)

Dynamic surface tension of hydrophobically modified chitosans

V. G. Babaka, J. Desbrièresb

a A.N. Nesmeyanov Institute of Organoelement Compounds of Russian Academy of Sciences, Moscow, Russian Federation
b CERMAV–CNRS, affiliated with Joseph Fourier University, Grenoble, France
Abstract: Dynamic tensiometry has been applied to a comparative study of the kinetics of adsorption of cationic polysoaps (alkylated chitosans) and dynamic associates (surfactant–polyelectrolyte complexes, SPECs) between chitosan and the anionic surfactant SDS at the air–water interface.
Document Type: Article
Language: English


Citation: V. G. Babak, J. Desbrières, “Dynamic surface tension of hydrophobically modified chitosans”, Mendeleev Commun., 14:2 (2004), 66–69
Linking options:
  • https://www.mathnet.ru/eng/mendc3809
  • https://www.mathnet.ru/eng/mendc/v14/i2/p66
  • This publication is cited in the following 29 articles:
    1. Hernán A. Ritacco, Marcos Fernández Leyes, Jhon Sánchez Morales, “Dynamic surface tension of polymer–surfactant mixtures at water–gas interfaces”, Current Opinion in Colloid & Interface Science, 75 (2025), 101877  crossref
    2. Cecilio Carrera, Carlos Bengoechea, Francisco Carrillo, Nuria Calero, “Effect of deacetylation degree and molecular weight on surface properties of chitosan obtained from biowastes”, Food Hydrocolloids, 137 (2023), 108383  crossref
    3. G. I. Kovtun, “Interfacial properties of chitosan lactate at the liquid/air interface”, Him. Fiz. Tehnol. Poverhni, 12:4 (2021), 374  crossref
    4. A.I. Kovtun, E.S. Kartashynska, D. Vollhardt, “Adsorption and viscoelastic properties of chitosan lactate at the liquid-gas interface”, JCIS Open, 1 (2021), 100001  crossref
    5. Hema Choudhary, Michael B. Rudy, Matthew B. Dowling, Srinivasa R. Raghavan, “Foams with Enhanced Rheology for Stopping Bleeding”, ACS Appl. Mater. Interfaces, 13:12 (2021), 13958  crossref
    6. Dali Huang, Roshan Sebastian, Lecheng Zhang, Hongfei Xu, Shijun Lei, Mingfeng Chen, Abhijeet Shinde, Rong Ma, M. Sam Mannan, Zhengdong Cheng, “Biocompatible Herder for rapid oil spill treatment over a wide temperature range”, Journal of Loss Prevention in the Process Industries, 62 (2019), 103948  crossref
    7. Audrey N. Roy, Lazhar Benyahia, Michel Grisel, Frederic Renou, “Shear interfacial viscoelasticity of native and hydrophobically modified xanthan at oil/water interface”, Food Hydrocolloids, 61 (2016), 887  crossref
    8. Matthew B. Dowling, Ian C. MacIntire, Joseph C. White, Mayur Narayan, Michael J. Duggan, David R. King, Srinivasa R. Raghavan, “Sprayable Foams Based on an Amphiphilic Biopolymer for Control of Hemorrhage Without Compression”, ACS Biomater. Sci. Eng., 1:6 (2015), 440  crossref
    9. Alberto Romero, Tom Verwijlen, Antonio Guerrero, Jan Vermant, “Interfacial properties of crayfish protein isolate/chitosan mixed films”, Food Hydrocolloids, 32:2 (2013), 395  crossref
    10. Panya Sunintaboon, Kunyaporn Pumduang, Thammasit Vongsetskul, Prapadsorn Pittayanurak, Natthinee Anantachoke, Patoomratana Tuchinda, Alain Durand, “One-step preparation of chitosan/sodium dodecyl sulfate-stabilized oil-in-water emulsion of Zingiber cassumunar Roxb. oil extract”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 414 (2012), 151  crossref
    11. Nuria Calero, José Muñoz, Pablo Ramírez, Antonio Guerrero, “Flow behaviour, linear viscoelasticity and surface properties of chitosan aqueous solutions”, Food Hydrocolloids, 24:6-7 (2010), 659  crossref
    12. Felippe J. Pavinatto, Luciano Caseli, Osvaldo N. Oliveira, “Chitosan in Nanostructured Thin Films”, Biomacromolecules, 11:8 (2010), 1897  crossref
    13. Jacques Desbrières, Valery Babak, “Interfacial properties of chitin and chitosan based systems”, Soft Matter, 6:11 (2010), 2358  crossref
    14. Cristel Onesippe, Serge Lagerge, “Study of the complex formation between sodium dodecyl sulphate and gelatin”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 337:1-3 (2009), 61  crossref
    15. Valery G. Babak, Francis Baros, Frank Boury, Jacques Desbrières, “Dilational viscoelasticity and relaxation properties of interfacial electrostatic complexes between oppositely charged hydrophobic and hydrophilic polyelectrolytes”, Colloids and Surfaces B: Biointerfaces, 65:1 (2008), 43  crossref
    16. J. Desbrieres, V. G. Babak, “Interfacial properties of amphiphilic systems on the basis of natural polymers—chitin derivatives”, Russ J Gen Chem, 78:11 (2008), 2230  crossref
    17. A. G. Bykov, Sh.-Y. Lin, G. Loglio, R. Miller, B. A. Noskov, “Viscoelasticity of poly(vinylpyridinium chloride)/sodium dodecylsulfate adsorption films at the air–water interface”, Mendeleev Commun., 18:6 (2008), 342–344  mathnet  crossref
    18. Yin-Song Wang, Ling-Rong Liu, Qian Jiang, Qi-Qing Zhang, “Self-aggregated nanoparticles of cholesterol-modified chitosan conjugate as a novel carrier of epirubicin”, European Polymer Journal, 43:1 (2007), 43  crossref
    19. B.A. Noskov, A.Yu. Bilibin, A.V. Lezov, G. Loglio, S.K. Filippov, I.M. Zorin, R. Miller, “Dynamic surface elasticity of polyelectrolyte solutions”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 298:1-2 (2007), 115  crossref
    20. Valery G. Babak, Rachel Auzely, Marguerite Rinaudo, “Effect of Electrolyte Concentration on the Dynamic Surface Tension and Dilational Viscoelasticity of Adsorption Layers of Chitosan and Dodecyl Chitosan”, J. Phys. Chem. B, 111:32 (2007), 9519  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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