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Fabrication of mechanically durable superhydrophobic wood surfaces using polydimethylsiloxane and silica nanoparticles

机译:使用聚二甲基硅氧烷和二氧化硅纳米粒子制造机械耐用的超疏水木材表面

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The excellent properties of wood utilized as an engineering material are detracted by the complex wood-water interactions and the resulting dimensional instability and low durability against biological degradation. Inspired by the lotus effect, mechanically durable superhydrophobic coatings were successfully fabricated on intrinsically heterogeneous wood substrates by simply dip-coating in suspensions of hydrophobic silica (SiO2) nanoparticles dispersed in polydimethylsiloxane (PDMS) solution. Subsequent low-surface-energy treatment with some expensive reagents is not necessary owing to the hydrophobic nature of PDMS and the modified silica particles. The surface microstructure, roughness and wetting behavior of the PDMS-silica hybrid coatings on wood surfaces were investigated in relation to the loadings of the silica particles in the PDMS matrix. When the silica particle loading reached a critical level, desirable hierarchical microanostructures were formed on the wood substrate, allowing for the generation of superhydrophobicity with a contact angle of 152 degrees and a sliding angle of less than 10 degrees. The fabricated PDMS-silica hybrid coating exhibited desirable durability against mechanical abrasion and high-frequency ultrasonic washing in water whilst basically retaining its microstructure and superhydrophobicity. Such mechanically durable superhydrophobic wood surfaces with self-cleaning properties offer an interesting alternative for wood modification, and could improve the performance of wood as an engineering material.
机译:用作工程材料的木材的优异性能会因复杂的木材与水之间的相互作用以及由此导致的尺寸不稳定性和对生物降解的低耐久性而受到影响。受荷叶效应的启发,通过简单地浸涂在分散在聚二甲基硅氧烷(PDMS)溶液中的疏水性二氧化硅(SiO2)纳米颗粒的悬浮液中,就可以在固有异质木材基材上成功地制造出机械耐用的超疏水涂料。由于PDMS和改性的二氧化硅颗粒的疏水性,随后不需要用一些昂贵的试剂进行低表面能处理。研究了PDMS-二氧化硅杂化涂层在木材表面的表面微观结构,粗糙度和润湿行为,与PDMS基体中二氧化硅颗粒的含量有关。当二氧化硅颗粒的装载量达到临界水平时,在木材基材上形成了所需的分层微/纳米结构,从而产生了具有152度接触角和小于10度滑动角的超疏水性。所制造的PDMS-二氧化硅杂化涂层在机械磨损和水中高频超声清洗方面表现出理想的耐久性,同时基本上保持了其微观结构和超疏水性。这种具有自清洁性能的机械耐用超疏水木材表面为木材改性提供了一种有趣的替代方法,并且可以改善木材作为工程材料的性能。

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