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Swelling Studies of Porous and Nonporous Semi-IPN Hydrogels for Sensor and Actuator Applications

机译:用于传感器和执行器的多孔和无孔半IPN水凝胶的溶胀研究

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摘要

In this article, we present a semi-interpenetrating network (IPN) hydrogel of reasonable size with improved swelling behavior. The semi-IPN is composed of -isopropylacrylamide and 2-acrylamido-2-methyl-1-propanesulfonic acid. Porosity was generated chemically by a surfactant-based template method. The swelling behavior was measured after an abrupt change of the temperature to 25 °C or 40 °C or after an abrupt change of the salt concentration of the aqueous medium surrounding the hydrogel samples. A set of static swelling degrees was determined from swelling measurements in salt solutions of varying concentrations and at different temperatures. Introducing porosity to the semi-IPN decreases the swelling times for most measurements while the sensor and actuator characteristics of the hydrogel found in previous studies are preserved. Additionally, we propose theoretical assumptions and explanations regarding the differences in the swelling kinetics of the porous and the nonporous semi-IPN and deduce implications for sensor and actuator applications.
机译:在本文中,我们提出了合理尺寸的半互穿网络(IPN)水凝胶,具有改善的溶胀性能。半IPN由-异丙基丙烯酰胺和2-丙烯酰胺基-2-甲基-1-丙烷磺酸组成。孔隙率是通过基于表面活性剂的模板法化学产生的。在温度突然变化至25°C或40°C或水凝胶样品周围的水性介质的盐浓度突然变化之后,测量溶胀行为。根据在不同浓度和不同温度下的盐溶液中的溶胀测量值确定了一组静态溶胀度。在大多数研究中,将孔隙率引入半IPN可减少溶胀时间,同时保留了先前研究中发现的水凝胶的传感器和执行器特性。此外,我们提出了关于多孔和无孔半IPN溶胀动力学差异的理论假设和解释,并推论了传感器和执行器应用的含义。

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