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Effect of the Anchoring Layer and Transport Type on the Adsorption Kinetics of Lambda Carrageenan.

Aneta MichnaJulia Maciejewska-PrończukAgata PomorskaMonika WasilewskaTayfun KilicerJulia WittOzlem Ozcan
Published in: The journal of physical chemistry. B (2021)
The kinetics of lambda carrageenan (λ-car) adsorption/desorption on/from anchoring layers under diffusion- and convection-controlled transport conditions were investigated. The eighth generation of poly(amidoamine) dendrimers and branched polyethyleneimine possessing different shapes and polydispersity indexes were used for anchoring layer formation. Dynamic light scattering, electrophoresis, streaming potential measurements, optical waveguide lightmode spectroscopy, and quartz crystal microbalance were applied to characterize the formation of mono- and bilayers. The unique combination of the employed techniques enabled detailed insights into the mechanism of the λ-car adsorption mainly controlled by electrostatic interactions. The results show that the macroion adsorption efficiency is strictly correlated with the value of the final zeta potentials of the anchoring layers, the transport type, and the initial bulk concentration of the macroions. The type of the macroion forming the anchoring layer had a minor impact on the kinetics of λ-car adsorption. Besides significance to basic science, the results presented in this paper can be used for the development of biocompatible and stable macroion multilayers of well-defined electrokinetic properties and structure.
Keyphrases
  • aqueous solution
  • high resolution
  • molecular dynamics simulations
  • public health
  • ionic liquid
  • single molecule
  • solid state
  • atomic force microscopy
  • human health