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Preparation of Polyurea Microcapsules Containing Phase Change Materials Using Microfluidics

机译:使用微富集化学的聚尿素微胶囊制备含有相变的材料

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The polyurea microcapsules containing phase change materials (MicroPCMs) are prepared by using a simple microfluidic device at low temperature. Paraffin is the core material, and isophor- one diisocyanate (IPDI) and tetraethylenepentamine (TEPA) are the shell materials. Effects of the flow rate of each phase, the emulsifier type, and the emulsifier dosage on MicroPCMs are investigated systematically. The size of MicroPCMs can be controlled by changing the flow rate of each phase. Fourier transform infrared spectroscopy (FT-IR) and scanning electron microscope (SEM) are used to characterize the chemical structure and morphology of the MicroPCMs, respectively. The images of SEM show that MicroPCMs have the regular spherical shape and a good size distribution. The results of FTIR indicate that MicroPCMs have been successfully prepared as the characteristic peaks of paraffin and polyurea are observed in the curve of MicroPCMs. The thermal properties and stabilities of MicroPCMs are investigated through differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA). When taking sodium dodecyl sulfate (SDS) as the emulsifier, the results show that the latent heat is 87.5 J/g with an encapsulation efficiency of 96.5% and the appropriate dosage of SDS is 1.0 g for synthesizing MicroPCMs. The results of TGA present that the polyurea shell can prevent the leakage and volatilization of the paraffin.
机译:通过在低温下使用简单的微流体设备来制备含有相变材料(MicroPCM)的聚尿液微胶囊。石蜡是核心材料,同生 - 一二异氰酸酯(IPDI)和四乙基凝胺(TEPA)是壳材料。系统地研究了每个阶段的流量,乳化剂类型和乳化剂剂量对微流的影响。可以通过更改每个阶段的流速来控制微核的大小。傅立叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)分别用于表征微流的化学结构和形态。 SEM的图像表明,MicroPCM具有规则的球形形状和良好的尺寸分布。 FTIR的结果表明,由于在MicroPCMS的曲线中观察到石蜡和聚脲的特征峰,因此已成功制备了MicroPCM。通过差异扫描量热法(DSC)和热重分析(TGA)研究了微流的热性能和稳定性。当将十二烷基硫酸钠(SDS)作为乳化剂时,结果表明,潜热为87.5 j/g,封装效率为96.5%,SDS的适当剂量为1.0 g,用于合成微流量。 TGA的结果表明,聚脲壳可以防止石蜡的泄漏和挥发。

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