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首页> 外文期刊>Surface & Coatings Technology >Durable and self-healing superhydrophobic polyvinylidene fluoride (PVDF) composite coating with in-situ gas compensation function
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Durable and self-healing superhydrophobic polyvinylidene fluoride (PVDF) composite coating with in-situ gas compensation function

机译:耐用和自愈的超疏水聚偏二氟乙烯(PVDF)复合涂层具有原位气体补偿功能

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Abstract A durable and self-healing superhydrophobic polyvinylidene fluoride (PVDF)/polyester-modified silicone resin (PMSR)/microspheric Na2CO3@SiO2 coating with WCA of 158±1.5° and low SA of 4±0.5° has been successfully prepared via sol-gel and spraying technique. After 24h hydrolysis of tetraethylorthosilicate (TEOS), microspheric Na2CO3@SiO2 particles with extremely large storage spaces were obtained as reservoirs for the healing agent of POTS. The superhydrophobicity of the prepared coating can be recovered after 10 rubbing/healing test cycles, indicating the excellent self-healing ability. Simultaneously, the prepared coating also possesses gas compensation capability in acidic condition, which can extend superhydrophobic duration by 400%. The gas compensation capability can be mainly attributed to the bubbles generated from the reaction between acid and porous Na2CO3, hindering water wetting the surface. Moreover, the prepared coating can withstand 4217 friction cycles without obvious surface damage, which is approximately 6 times higher than that of pure PVDF coating. This is mainly due to the combined action of the high adhesion of PMSR, the self-lubrication of PVDF and the surface hierarchical nano/micro wrinkles. The prepared coating also shows prominent superhydrophobic stability under the conditions of acid/alkaline solution (pH=1–14) or strong UV exposure (14days). It is believed that this durable and self-healing superhydrophobic coating is anticipated to open a new avenue to enlarge the application range of superhydrophobic coatings. Highlights ? Porous Na2CO3 particles grafted by nano-SiO2 were used as reservoirs to store the healing agent of POTS. ? The superhydrophobic PVDF/PMSR/Na2CO3@SiO2 coating can withstand 10 rubbing/healing cycles. ? The gas compensation capability of the prepared coating can extend superhydrophobic duration by 400% in acid solution. ? The prepared coating demonstrated good resistance to acid/alkaline solution and strong UV exposure.
机译:<![cdata [ 抽象 耐用和自愈的超疏水聚偏二氟乙烯(PVDF)/聚酯改性硅树脂(PMSR)/微球na 2 co <​​ce:inf loc =“post”> 3 @sio 2 < / Ce:inf> wca为158 ± 1.5°和低sa,为4 ± 0.5°通过溶胶 - 凝胶和喷涂技术成功制备。在24 H水解的四乙酯硅酸盐(TEOS),微球NA 2 CO 3 @SIO 2 具有极大的存储空间的粒子作为罐的愈合剂的储层获得。在10摩擦/愈合试验循环后,可以回收制备的涂层的超水性,表明优异的自我愈合能力。同时,制备的涂层还具有酸性条件下的气体补偿能力,其可以将超疏水持续时间延长400%。气体补偿能力主要归因于酸和多孔Na之间的反应产生的气泡 2 co <​​co 3 < / CE:INF>,妨碍水润湿表面。此外,制备的涂层可以承受4217摩擦循环,而没有明显的表面损伤,其比纯PVDF涂层高约6倍。这主要是由于PMSR的高附着力的组合作用,PVDF的自润滑和表面等级纳米/微皱纹。制备的涂层还在酸/碱性溶液的条件下显示出突出的超疏水稳定性(pH = 1-14)或强UV暴露( 14 天)。据信,预计这种耐用且自愈的超疏水涂层将打开新的途径以扩大超疏水涂料的应用范围。 亮点 多孔na 2 co <​​ce:inf loc =“帖子“> 3 覆盖纳米siO的颗粒 2 用作储存剂以存放罐的愈合剂。 超疏水性PVDF / PMSR / NA 2 CO 3 @sio 2 涂层可以承受10摩擦/愈合周期。 < / ce:list-item> 气体补偿能力制备的涂层可以在酸溶液中延伸400%的超疏水持续时间。 制备的涂料显示出良好的耐酸/碱性溶液和强紫外线暴露的良好抵抗力。

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