Department of Chemistry, The University of Cincinnati, P.O. Box 210172, Cincinnati, OH 45221, United States.
Department of Chemistry, The University of Cincinnati, P.O. Box 210172, Cincinnati, OH 45221, United States.
J Colloid Interface Sci. 2023 Sep;645:502-512. doi: 10.1016/j.jcis.2023.04.132. Epub 2023 May 4.
Elastomeric materials combining multiple properties within a single composite are highly desired in applications including biomaterials interfaces, actuators, and soft robotics. High spatial resolution is required to impart different properties across the composite for the intended application, but many techniques used to prepare these composites rely on multistep and complex methods. There is a need for the development of simple and efficient platforms to design layered composite materials. Here, we report the synthesis of horizontally- and vertically-patterned composites consisting of PDMS-based polymerized high internal phase emulsion (polyHIPE) porous elastomers and PDMS/PEG hydrogels. Composites with defined interfaces that were mechanically robust were prepared, and rheological analysis of the polyHIPE and hydrogel layers showed storage moduli values of ∼ 35 kPa and 45 kPa respectively. The compressive Young's Modulus and maximum strain of the polyHIPEs were dependent on the thiol to ene ratio in the formulation and obtained values ranging from 6 to 25 kPa and 50-65% respectively. The mechanical properties, total porosity of the polyHIPE, and swelling ratio of the hydrogel were unaffected by the patterning technique compared to non-patterned controls. PolyHIPE-hydrogel composite materials having up to 7-different horizontally pattered layers could be prepared that could expand and contract up hydration and drying.
在包括生物材料界面、执行器和软机器人在内的应用中,人们非常希望在单个复合材料中结合多种性能的弹性体材料。为了满足预期应用的要求,需要在复合材料中赋予不同的性能,因此需要高空间分辨率,但许多用于制备这些复合材料的技术依赖于多步和复杂的方法。需要开发简单高效的平台来设计分层复合材料。在这里,我们报告了由 PDMS 基聚合高内相乳液(polyHIPE)多孔弹性体和 PDMS/PEG 水凝胶组成的水平和垂直图案复合材料的合成。制备了具有机械强度的具有定义界面的复合材料,并且对 polyHIPE 和水凝胶层的流变分析表明,各自的储能模量值分别约为 35 kPa 和 45 kPa。聚异戊二烯的压缩杨氏模量和最大应变取决于配方中的硫醇与烯的比例,获得的数值范围分别为 6 至 25 kPa 和 50-65%。与非图案对照相比,图案化技术对 polyHIPE 的机械性能、总孔隙率和水凝胶的溶胀率没有影响。可以制备多达 7 种不同水平图案化层的聚异戊二烯-水凝胶复合材料,其可以在水合和干燥时膨胀和收缩。