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Facile Construction of Superhydrophobic Surfaces by Coating Fluoroalkylsilane/Silica Composite on a Modified Hierarchical Structure of Wood

机译:通过在木材的改性分层结构上涂覆氟代烷基硅烷/二氧化硅复合材料可轻松构建超疏水表面

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摘要

Constructing superhydrophobic surfaces by simple and low-cost methods remains a challenge in achieving the large-scale commercial application of superhydrophobic materials. Herein, a facile two-step process is presented to produce a self-healing superhydrophobic surface on wood to improve water and mildew resistance. In this process, the natural hierarchical structure of wood is firstly modified by sanding with sandpaper to obtain an appropriate microano composite structure on the surface, then a fluoroalkylsilane/silica composite suspension is cast and dried on the wood surface to produce the superhydrophobic surface. Due to the full use of the natural hierarchical structure of wood, the whole process does not need complicated equipment or complex procedures to construct the microano composite structure. Moreover, only a very low content of inorganic matter is needed to achieve superhydrophobicity. Encouragingly, the as-obtained superhydrophobic surface exhibits good resistance to abrasion. The superhydrophobicity can still be maintained after 45 abrasion cycles under the pressure of 3.5 KPa and this surface can spontaneously recover its superhydrophobicity at room temperature by self-healing upon damage. Moreover, its self-healing ability can be restored by spraying or casting the fluoroalkylsilane/silica composite suspension onto this surface to replenish the depleted healing agents. When used for wood protection, this superhydrophobic surface greatly improves the water and mildew resistance of wood, thereby prolonging the service life of wood-based materials.
机译:通过简单且低成本的方法构造超疏水表面仍然是实现超疏水材料的大规模商业应用的挑战。本文中,提出了一种容易的两步过程,以在木材上产生自修复的超疏水表面,从而改善了耐水性和防霉性。在此过程中,木材的自然分层结构首先通过用砂纸打磨进行改性,以在表面上获得合适的微/纳米复合结构,然后将氟烷基硅烷/二氧化硅复合悬浮液浇铸并干燥在木材表面上以产生超疏水表面。由于充分利用了木材的自然分层结构,因此整个过程不需要复杂的设备或复杂的程序即可构建微米/纳米复合结构。而且,仅需要非常低含量的无机物即可实现超疏水性。令人鼓舞的是,如此获得的超疏水表面表现出良好的耐磨性。在3.5 KPa的压力下经过45次磨损循环后,仍然可以保持超疏水性,并且该表面在损坏时可以通过自愈而在室温下自发恢复其超疏水性。而且,可以通过将氟代烷基硅烷/二氧化硅复合悬浮液喷雾或浇铸到该表面上以补充耗尽的愈合剂来恢复其自愈能力。当用于木材保护时,这种超疏水表面极大地提高了木材的防水性和防霉性,从而延长了木质材料的使用寿命。

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