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Swelling of a hemi-ellipsoidal ionic hydrogel for determination of material properties of deposited thin polymer films: an inverse finite element approach

机译:用于测定沉积的聚合物薄膜的材料性质的半椭圆形离子水凝胶的溶胀:逆有限元方法

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摘要

Selective deposition of polymers at the surface of an ionic hydrogel is conventionally used to tailor properties of the composite material for application in for instance drug release and cell encapsulation. Here we describe a method for determination of the mechanical properties of a thin polymer film deposited on an ionic hydrogel core. The ionic strength-dependent hydrogel swelling is affected by the cross-link density and thickness of the deposited polymer layer. A hemi-ellipsoidal geometry of the hydrogel, corresponding to that employed in proof-of-concept experiments, is used to enforce biaxial deformation of the deposited layer when the ionic hydrogel core is equilibrated at various ionic strengths. The ionic strength dependent equilibrium swelling ratio of the hydrogel with the deposited polymer film is modeled using a finite element approach. The free energy of the hydrogel core includes contributions accounting for polymer mixing, elastic deformation of the network and the Donnan equilibrium. The latter type of contribution is not included in the neutral thin layer in the present study. Adding the polymer multilayer/shell at the surface reveals that the ionic strength-dependent swelling constraint is more pronounced the thicker and stiffer the film is. Combining thickness measurements of the polymer film with high resolution interferometric determination of reduction in swelling capacity of ionic hydrogels, an equivalent elastic property of the polymer layer is obtained using inverse finite element analysis. In the proof-of-concept experiments, analysis of data obtained for chitosan–alginate multilayers composed of four and eight polymer bilayers deposited on an anionic acrylamide-based hydrogel core suggests that these bilayers show an elastic stiffness one order of magnitude larger than that of the hydrogel core.
机译:聚合物在离子水凝胶表面的选择性沉积通常用于调整复合材料的性能,以用于例如药物释放和细胞封装。在这里,我们描述了一种用于确定沉积在离子水凝胶芯上的聚合物薄膜的机械性能的方法。取决于离子强度的水凝胶溶胀受到沉积聚合物层的交联密度和厚度的影响。当离子水凝胶核心在各种离子强度下达到平衡时,水凝胶的半椭圆形几何体(与概念验证实验中所采用的几何形状相对应)用于强制沉积层的双轴变形。使用有限元方法对水凝胶与沉积的聚合物薄膜的离子强度相关的平衡溶胀率进行建模。水凝胶核的自由能包括聚合物混合,网络的弹性变形和Donnan平衡的贡献。在本研究中,后一种类型的贡献未包括在中性薄层中。在表面上添加聚合物多层/壳层显示出,取决于离子强度的溶胀约束在膜越厚和越硬时更加明显。结合聚合物膜的厚度测量结果和离子水凝胶溶胀能力降低的高分辨率干涉法测定,可以使用逆有限元分析获得聚合物层的等效弹性。在概念验证实验中,对由沉积在阴离子丙烯酰胺基水凝胶芯上的四个和八个聚合物双层构成的壳聚糖-海藻酸酯多层所获得数据的分析表明,这些双层的弹性刚度比纳米双层的弹性刚度大一个数量级。水凝胶核心。

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