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Highly Hydrophobic and Self-Cleaning Heat-Treated Larix spp. Prepared by TiO2 and ZnO Particles onto Wood Surface

机译:高度疏水性和自清洁热处理落叶松SPP。由TiO 2和ZnO颗粒制备到木材表面上

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The deposition of TiO2/ZnO on heat-treated wood was prepared by a hydrothermal reaction and sol-gel method. Highly hydrophobic wood was successfully prepared with low surface free energy. The surface-modified wood samples were characterized by 3D-laser shape measurement microscopy, scanning electron microscopy, energy-dispersive spectroscopy, and Fourier transform infrared spectroscopy for the microstructure and chemical composition investigation. The deposited TiO2 or ZnO markedly made the wood surface brighter, which was demonstrated by visual observation and spectrophotometer. The TiO2/ZnO particles were successfully loaded onto the surface of the wood, proven by SEM-EDS and FTIR analyses. The contact angle of TiO2 and ZnO-modified wood reached 123.9° and 134.1° respectively, which is obviously higher than that of the control at 88.9°. The hydrophobic properties of the TiO2/ZnO modified wood samples were directly related to the shapes of clusters and spheres of particles, which increased the roughness of the wood surface. This study shows the hydrophobic properties of the TiO2/ZnO-modified wood and provides the color and roughness changes for the painting process of heat-treated wood.
机译:通过水热反应和溶胶 - 凝胶法制制备TiO 2 / ZnO对热处理木材的沉积。高度疏水的木材用低表面自由能成功制备。通过3D-激光形状测量显微镜,扫描电子显微镜,能量分散光谱和傅里叶变换红外光谱,以及用于微观结构和化学成分调查的表面改性木材样品。沉积的TiO2或ZnO明显使木材表面更亮,通过视觉观察和分光光度计证明。通过SEM-EDS和FTIR分析成功地将TiO 2 / ZnO颗粒加载到木材表面上。 TiO2和ZnO改性木材的接触角分别达到123.9°和134.1°,明显高于88.9°的控制。 TiO2 / ZnO改性木样品的疏水性质与颗粒的形状直接相关,颗粒的形状增加,这增加了木材表面的粗糙度。该研究表明了TiO2 / ZnO改性木材的疏水性质,并为热处理木材的涂装过程提供了颜色和粗糙度变化。

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