Modeling the growth processes of polyelectrolyte multilayers using a quartz crystal resonator

J Phys Chem B. 2007 Jul 26;111(29):8509-19. doi: 10.1021/jp067344h. Epub 2007 Mar 7.

Abstract

The layer-by-layer buildup of chitosan/hyaluronan (CH/HA) and poly(l-lysine)/hyaluronan (PLL/HA) multilayers was followed on a quartz crystal resonator (QCR) in different ionic strengths and at different temperatures. These polyelectrolytes were chosen to demonstrate the method whereby useful information is retrieved from acoustically thick polymer layers during their buildup. Surface acoustic impedance recorded in these measurements gives a single or double spiral when plotted in the complex plane. The shape of this spiral depends on the viscoelasticity of the layer material and regularity of the growth process. The polymer layer is assumed to consist of one or two zones. A mathematical model was devised to represent the separation of the layer to two zones with different viscoelastic properties. Viscoelastic quantities of the layer material and the mode and parameters of the growth process were acquired by fitting a spiral to the experimental data. In all the cases the growth process was mainly exponential as a function of deposition cycles, the growth exponent being between 0.250 and 0.275.

MeSH terms

  • Acoustics / instrumentation*
  • Chitosan / chemistry*
  • Elasticity
  • Electrolytes / chemistry
  • Hyaluronic Acid / chemistry*
  • Models, Chemical*
  • Polylysine / chemistry*
  • Quartz*
  • Viscosity

Substances

  • Electrolytes
  • Quartz
  • Polylysine
  • Hyaluronic Acid
  • Chitosan