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Design and fabrication of pH-responsive microencapsulated phase change materials for multipurpose applications

机译:用于多功能应用的pH响应微囊化相变材料的设计和制造

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This paper reported the design and fabrication of microencapsualed n-eicosane with a poly(methyl methacrylate-co-methacrylic acid) shell as a novel type of pH-responsive microencapsulated PCM for multipurpose applications such as thermal energy storage and controlled chemical release by an emulsion-templated in-situ polymerization technology. The spherical morphology and core-shell microstructure of the resultant pH-responsive microcapsules were confirmed and their chemical structure and elemental compositions were identified. Furthermore, their phase change behaviors and thermal energy-storage performance were investigated extensively. The pH-responsive microcapsules not only obtained excellent thermal regulation and thermal management capabilities due to a high phase change enthalpy over 177 J/g and good phase change reversibility, but also presented a well-defined pH-responsive controlled-release behavior by association and dissociation of hydrogen bonding interaction induced by different pH conditions and electrostatic repulsion. The dye release experimental results indicated that a maximum release amount of Rhodamine B could be achieved for the dye loaded microcapsules at mildly acidic pH 5.05. In the light of highly efficient pH-stimuli responsiveness and excellent thermal regulation capability, the pH-responsive microcapsules developed by this study exhibit a great potential for pH-stimuli responsive controlled release applications of temperature/heat-sensitive drugs or chemicals when performing the thermal energy storage and thermal regulation.
机译:本文报道了具有聚(甲基丙烯酸甲酯-共-甲基丙烯酸)壳的微囊化正二十烷的设计和制造,该壳是一种新型的pH响应微囊化PCM,可用于多种用途,例如热能存储和通过乳液控制化学释放模板原位聚合技术。证实了所得pH响应性微囊的球形形态和核-壳微结构,并鉴定了其化学结构和元素组成。此外,对它们的相变行为和热能存储性能进行了广泛的研究。 pH响应性微胶囊不仅具有超过177 J / g的高相变焓和良好的相变可逆性,而且还具有出色的热调节和热管理能力,而且通过缔合和结合具有良好的pH响应性控释性能。不同pH条件和静电排斥引起的氢键相互作用的解离。染料释放实验结果表明,在中等酸性pH 5.05下,负载染料的微囊可以达到最大的若丹明B释放量。鉴于高效的pH刺激响应能力和出色的热调节能力,本研究开发的pH响应微囊在执行热反应时具有对温度/热敏感药物或化学药品的pH刺激响应控释应用的巨大潜力。能量存储和热调节。

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