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Self-assembly of a superhydrophobic ZnO nanorod arrays film on wood surface using a hydrothermal method

机译:超疏水ZnO纳米棒阵列阵列阵列在木材表面上使用水热法进行自组装

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To prohibit wood hygroscopicity, changing naturally hydrophilic wood surface into hydrophobic surface is essential. To achieve this goal, one possible approach is to coat nanostractured metal oxides on wood surface. In this study, wood surface coated by ZnO nanorod arrsys (ZNAs) was successfully fabricated using a hydrothermal method with subsequent modification by a thin layer of n-dodecyltrimethoxysilane (DTMS). SEM images showed uniformly large-scale ZNAs were grown onto the wood surface. XRD patterns confirmed that the ZNAs were the hexagonal wurtzite phase. The wettability of the ZNAs modified wood sample was evaluated by water contact angle (WCA) measurements. The ZNAs modified wood was found to exhibit superhydrophobicity with a WCA of about 156° and a sliding angle of around 2°, which could resulted from the proper surface roughness and lower surface energy. These results demonstrated that hydrothermal method was a feasible method to create superhydrophobic wood.
机译:为了禁止木材吸湿性,将天然亲水的木材表面变为疏水性表面是必不可少的。为了实现这一目标,一种可能的方法是在木材表面上涂层纳米复苏金属氧化物。在该研究中,使用ZnO nanorod Arrsys(ZnAs)涂覆的木材表面使用水热法成功制造,随后通过薄的N-十二烷基三甲氧基硅烷(DTM)改性。 SEM图像显示均匀大规模的ZnAs生长在木材表面上。 XRD模式证实ZnAs是六边形紫硝基钛矿相。通过水接触角(WCA)测量评估ZnAS改性木样品的润湿性。发现ZnAS改性木材具有大约156°的WCA的超疏水性和约2°的滑动角度,这可能是由于适当的表面粗糙度和低表面能。这些结果表明,水热法是制造超疏水木材的可行方法。

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