Flexible and Mechanically Enhanced Polyurethane Composite for γ-ray Shielding and Thermal Regulation

材料科学 聚氨酯 复合材料 电磁屏蔽 复合数 极限抗拉强度 热稳定性 润湿 二氧化硅 乳状液 化学工程 工程类
作者
Tianyu Cai,Fangfang He,Yongsheng Li,Yingjun Li,Zhuoni Jiang,Jiale Li,Yuanlin Zhou,Zhengguo Chen,Wenbin Yang
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:15 (3): 4690-4702 被引量:19
标识
DOI:10.1021/acsami.2c18252
摘要

Microencapsulation of paraffin with lead tungstate shell (Pn@PWO) shows the drawbacks of low wettability and poor leakage-proof property and thermal reliability, restricting the application of phase change microcapsules. Herein, a novel paraffin@lead tungstate@silicon dioxide double-shelled microcapsule (Pn@PWO@SiO2) has been successfully constructed by the emulsion-templated interfacial polycondensation and applied in the waterborne polyurethane (WPU). The results indicated that a SiO2 layer with controlled thickness was formed on the PbWO4 shell. The Pn@PWO@SiO2 microcapsules have exhibited superior leakage-proof properties and thermal reliability through double-shelled protection, and the leakage rate decreased by at least 54.11% compared to that of Pn@PWO microcapsules. The SiO2 layer with abundant polar groups ameliorated the wettability of microcapsules and the interfacial compatibility between microcapsules and the WPU matrix. The tensile strength of WPU/Pn@PWO@SiO2-2 composites reached 10.98 MPa, which was over 7 times greater than that of WPU/Pn@PWO composites. In addition, WPU/Pn@PWO@SiO2-2 composites with a latent heat capacity of over 41 J/g exhibited efficient phase change stability and γ-ray shielding properties. Also, the mass attenuation coefficients reached 1.38 cm2/g at 105.3 keV and 1.12 cm2/g at 86.5 keV, respectively. These properties will greatly promote the application of WPU/Pn@PWO@SiO2 composites into γ-ray-shielding devices with thermal regulation.
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