화학공학소재연구정보센터
Langmuir, Vol.25, No.22, 13142-13150, 2009
Analysis of Responsive Characteristics of Ionic-Strength-Sensitive Hydrogel with Consideration of Effect of Equilibrium Constant by a Chemo-Electro-Mechanical Model
A multiphysics model is presented in this paper for analysis of the influence of various equilibrium constants oil the smart hydrogel responsive to the ionic strength of environmental solution, and termed the multieffect-coupling ionic-strength stimulus (MECis) model. The model is characterized by a set of partial differential governing equations by consideration of the mass and momentum Conservations of the system and Coupled chemical, electrical, and mechanical multienergy domains. The Nernst-Planck equations are derived by the mass conservation of the ionic species in both the interstitial fluid of the hydrogel and the surrounding solution. The binding reaction between the fixed charge groups of the hydrogel and the mobile ions in the solution is described by the fixed charge equation, which is based oil the Langmuir monolayer theory. As an important effect for the binding reaction. the equilibrium constant is incorporated into the fixed charge equation. The kinetics of the hydrogel swelling/deswelling is illustrated by the mechanical equation, based oil the law of momentum conservation for the solid polymeric networks matrix within the hydrogel. The MECis model is examined by comparison of the numerical simulations and experiments from open literature. The analysis of the influence of different equilibrium constants oil the responsive characteristics of the ionic-strength-sensitive hydrogel is carried out with detailed discussion.