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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Preparation of SiO2 nanoparticles with adjustable size for fabrication of SiO2/PMHS ORMOSIL superhydrophobic surface on cellulose-based substrates
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Preparation of SiO2 nanoparticles with adjustable size for fabrication of SiO2/PMHS ORMOSIL superhydrophobic surface on cellulose-based substrates

机译:具有可调节尺寸的SiO2纳米颗粒制备SiO2 / PMHS含有超细杂交表面的可调节尺寸的基于纤维素基底物的制备

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摘要

Silica (SiO2) nanoparticles with controlled particle size and poly(methylhydrogen)siloxane (PMHS) were applied to fabricate superhydrophobic SiO2/PMHS ORMOSIL (organically modified silicate) coating on cellulose-based substrates (wood, cotton and filter paper). The influence of weight ratio of ammonia to TEOS, H2O to TEOS and ethanol to TEOS on the particle size of SiO2 nanoparticles was evaluated by the response surface methodology. The results indicated that the particle size of SiO2 nanoparticles could be well-controlled between 25 nm and 100 nm. The effect of particle size on hydrophobicity of SiO2/PMHS ORMOSIL coated wood was investigated. The modified wood had the best hydrophobicity as the particle size of SiO2 was 75 nm, possessing a water contact angle of 158.2 degrees. After deposition of SiO2/PMHS ORMOSIL coating, the water resistance and anti-fouling property of wood increased obviously. The water absorption decreased significantly from 70.3% to 24.1%. In addition, SiO2/PMHS ORMOSIL was further applied to functionalize filter paper and cotton for oil/water separation. The separation efficiency of diesel from water was 96%-99% for modified filter paper after separation for 20 cycles, while the absorption capacity was 10.5 times of the modified cotton.
机译:将具有受控粒径和聚(甲基氢)硅氧烷(PMH)的二氧化硅(SiO 2)纳米颗粒用于制造基于纤维素的基材(木材,棉花和滤纸)上的超疏水SiO 2 / PMHs Ormosil(有机改性硅酸盐)涂层。通过响应表面方法评价氨与TEOS,H 2 O至TEOS和乙醇对TEOS的影响,响应表面方法评价SiO2纳米粒子粒径上的TEOS。结果表明,SiO2纳米颗粒的粒径可以在25nm和100nm之间进行良好控制。研究了粒度对SiO2 / PMHs涂层木材疏水性的影响。改性木材具有最佳的疏水性,因为SiO 2的粒度为75nm,具有158.2度的水接触角。沉积SiO 2 / PMHS涂料后,木材的耐水性和防污性能明显增加。吸水率显着降低至24.1%。此外,SiO 2 / PMHS Ormosil进一步应用于官能化滤纸和棉花,用于油/水分离。在分离20次循环后,改性滤纸柴油从水的分离效率为96%-99%,吸收能力为改性棉的吸收能力为10.5倍。

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