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Water-repellent functional coatings through hybrid SiO_2/HTEOS/CPTS sol on the surfaces of cellulose fibers

机译:通过在纤维素纤维表面上混合SiO_2 / HTEOS / CPTS溶胶形成防水功能涂料

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摘要

A water-repellent functional hybrid coating is deposited on the surfaces of cellulose substrates from a hybrid SiO_2/HTEOS/CPTS sol prepared by acid-catalyzed hydrolytic co-polycondensation of tetraethoxysilane (TEOS), γ-chloropropyltriethoxysilane (CPTS) and hexadecyltrimethoxysilane (HTEOS). The contract angles of water on the fabric coated with hybrid SiO_2/HTEOS/CPTS sol are improved to 139.8°, and the enhancement are mainly achieved by the combination of low surface energy chemical compositions (HTEOP and CPTS) and rough surface geometrical structure which is demonstrated by Atomic force microscopy (AFM) and Scanning electron microscope (SEM). The hydrostatic pressure analysis confirms that the hydrostatic pressure of fabric coated with hybrid SiO_2/HTEOS/CPTS sol is 4.1kPa, which is significantly higher than that of the control sample (1.7kPa). The droplet shapes analysis indicates that the water repellent of the fabric sample is universal. The breaking strengths of the fabric coated with hybrid SiO_2/HTEOS/CPTS sol are increased 3.4% in the warp direction and 15.4% in the weft direction comparing to that of the untreated sample, respectively. Whereas, the elongation rates of in the warp direction and weft direction are decreased by 5.6% and 7.7%, respectively.
机译:通过四乙氧基硅烷(TEOS),γ-氯丙基三乙氧基硅烷(CPTS)和十六烷基三甲氧基硅烷(HTEOS)的酸催化水解共缩聚制备的SiO_2 / HTEOS / CPTS杂化溶胶在纤维素基材的表面沉积疏水功能杂化涂层。水在涂有SiO_2 / HTEOS / CPTS杂化溶胶的织物上的收缩角提高到139.8°,增强主要是通过结合低表面能化学成分(HTEOP和CPTS)和粗糙的表面几何结构实现的。由原子力显微镜(AFM)和扫描电子显微镜(SEM)证实。静水压力分析证实,涂有混合SiO_2 / HTEOS / CPTS溶胶的织物的静水压力为4.1kPa,显着高于对照样品的静水压力(1.7kPa)。液滴形状分析表明织物样品的疏水性是通用的。与未经处理的样品相比,涂有混合SiO_2 / HTEOS / CPTS溶胶的织物的断裂强度在经向分别增加3.4%,在纬向增加15.4%。而经向和纬向的伸长率分别降低了5.6%和7.7%。

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