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壳聚糖复合梳状聚合物相转变材料的凝聚微胶囊化。

Chitosan composite microencapsulated comb-like polymeric phase change material via coacervation microencapsulation.

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes, Tianjin Key Laboratory of Advanced Fibers and Energy Storage, School of Material Science and Engineering, Tianjin Polytechnic University, Tianjin 300387, China.

出版信息

Carbohydr Polym. 2018 Nov 15;200:602-610. doi: 10.1016/j.carbpol.2018.08.003. Epub 2018 Aug 3.

Abstract

In order to reduce environmental pollution during microencapsulating phase change materials and expand their applications as well, a novel eco-friendly microencapsulated/nanoencapsulated phase change materials (Micro/NanoPCMs) and the corresponding encapsulation method were proposed and discussed in this study, where the natural chitosan and side-chain crystallizable comb-like polymer were selected as shell material and core material, respectively. During the encapsulating process via coacervation, the effects of different core-shell ratios on the morphology and thermal storage properties of microcapsules were discussed. FE-SEM and TEM was employed to investigate the morphology and microstructure of the microcapsules. The thermodynamics performance of microcapsules was studied using TGA and DSC. The encapsulation efficiency of microcapsules ranged from 49.82% to 68.99%, and the thermal stability temperature of microcapsules was measured to be 243.2 °C. The fabrication process where natural raw materials were employed and showing promising applications in such fields as medical treatment.

摘要

为了降低相变材料微胶囊化过程中的环境污染,并拓展其应用,本研究提出并讨论了一种新型的环保型微胶囊化/纳米胶囊化相变材料(Micro/NanoPCMs)及其相应的封装方法,其中天然壳聚糖和侧链结晶梳状聚合物分别被选为壳材料和核材料。在共凝聚法的胶囊化过程中,讨论了不同核壳比对微胶囊形貌和储能性能的影响。FE-SEM 和 TEM 用于研究微胶囊的形态和微观结构。使用 TGA 和 DSC 研究了微胶囊的热力学性能。微胶囊的包封效率范围为 49.82%至 68.99%,微胶囊的热稳定性温度测量值为 243.2°C。该制备工艺采用天然原料,在医疗等领域具有广阔的应用前景。

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