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Physical behavior of cross-linked PEG hydrogels photopolymerized within nanostructured lyotropic liquid crystalline templates

机译:纳米结构化溶致液晶模板内光聚合的交联PEG水凝胶的物理行为

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摘要

While hydrogels exhibit numerous characteristics that make them ideal in biological applications, they are typically limited in overall design flexibility due to the rigid dependence of their physical properties and behavior on the chemistry and cross-linking structure of the gel's network. As the demand for hydrogels with precisely engineered properties grows, nanotechnology may provide a means through which to circumvent the inherent drawbacks of hydrogel systems to form unique, highly advanced materials with enhanced properties. In this work, self-assembling nanostructured lyotropic liquid crystalline (LLC) mesophases were used as polymerization templates, directing the formation of highly cross-linked PEGDA hydrogels. A 3-fold increase in both the compressive modulus and diffusive transport is realized in the PEGDA gel as the parent LLC mesophase, and thus the resulting structure of the hydrogel matrix is changed from a low ordered morphology to a system with a high degree of order and geometry. Additionally, the LLC templated hydrogels exhibited unique property relationships, including simultaneous increases in both the water absorptivity and the modulus of the material, behavior that is not observed in nontemplated, traditional PEGDA gels. The results of this study demonstrate that direct control over the physical properties of a cross-linked hydrogel material can be achieved simply by changing the degree of order and geometry imposed on the forming network using nanostructured LLC templates.
机译:尽管水凝胶展现出众多特性,使其成为生物学应用的理想之选,但由于其物理性质和行为对凝胶网络的化学性质和交联结构的严格依赖性,它们在总体设计灵活性方面通常受到限制。随着对具有精确设计特性的水凝胶的需求的增长,纳米技术可以提供一种手段来克服水凝胶系统的固有缺点,从而形成具有增强特性的独特的,高度先进的材料。在这项工作中,自组装的纳米结构的溶致液晶(LLC)中间相被用作聚合模板,指导了高度交联的PEGDA水凝胶的形成。在PEGDA凝胶中,作为母体LLC中间相,压缩模量和扩散传输均增加了3倍,因此,水凝胶基质的最终结构从低序形态变为高序系统和几何。另外,LLC模板化水凝胶表现出独特的特性关系,包括吸水率和材料模量的同时增加,这是在非模板化传统PEGDA凝胶中未观察到的行为。这项研究的结果表明,使用纳米结构的LLC模板,只需改变施加在成形网络上的有序度和几何形状,就可以直接控制交联水凝胶材料的物理性能。

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