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二氧化硅厚度对纳米 TiO 粒子在功能性聚氨酯纳米复合材料中性能的影响。

The effect of silica thickness on nano TiO particles for functional polyurethane nanocomposites.

机构信息

Department of Chemical and Biochemical Engineering, Western University, London, Ontario, N6A 5B9, Canada.

出版信息

Nanotechnology. 2017 Mar 17;28(11):115709. doi: 10.1088/1361-6528/aa5cf0.

DOI:10.1088/1361-6528/aa5cf0
PMID:28211360
Abstract

In order to help reduce the agglomeration of TiO nanoparticles in polyurethane coatings while enhancing their photoactivity and mechanical/physical properties, this work examined encapsulating TiO nanoparticles in a thin layer of SiO, prior to their nanocomposite polymerization. By applying a Stöber process, varying thicknesses of SiO were successfully coated onto the surface of anatase and rutile TiO nanoparticles. The methylene blue results showed that different loadings of SiO onto the TiO surface significantly influenced their photocatalytic activity. When the loading weight of SiO was lower than 3.25 wt%, the photocatalytic activity was enhanced, while with higher loadings, it gave lower photocatalytic activity. When the rutile phase TiO surface was fully covered with SiO, an enhanced photocatalytic activity was observed. When these silica coated nanoparticles were applied in polyurethane coatings, increasing the amount of SiO on the titania surface increased the coatings contact angle from 75° to 87° for anatase phase and 70°-78° for rutile phase. The Young's modulus was also increased from 1.06 GPa to 2.77 GMPa for anatase phase and 1.06-2.17 GPa for rutile phase, attributed to the silica layer giving better integration. The thermal conductivity of the polyurethane coatings was also successfully decreased by encapsulating SiO on the titania surface for next generation high performance coatings.

摘要

为了帮助减少 TiO 纳米粒子在聚氨酯涂料中的团聚,同时提高其光活性和机械/物理性能,本工作研究了在纳米复合材料聚合之前,将 TiO 纳米粒子封装在一层薄薄的 SiO 中。通过应用 Stöber 工艺,成功地在锐钛矿和金红石 TiO 纳米粒子的表面涂覆了不同厚度的 SiO。亚甲基蓝的结果表明,SiO 在 TiO 表面上的不同负载量显著影响其光催化活性。当 SiO 的负载量低于 3.25wt%时,光催化活性增强,而负载量较高时,光催化活性较低。当金红石相 TiO 表面完全被 SiO 覆盖时,观察到光催化活性增强。当将这些涂覆有二氧化硅的纳米粒子应用于聚氨酯涂料中时,增加 TiO 表面上的 SiO 量会使涂料接触角从锐钛矿相的 75°增加到 87°,金红石相的 70°-78°。杨氏模量也从 1.06GPa 增加到 2.77GPa 对于锐钛矿相和 1.06-2.17GPa 对于金红石相,这归因于二氧化硅层具有更好的整体性。通过在 TiO 表面上封装 SiO,还成功降低了下一代高性能涂料中聚氨酯涂料的热导率。

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