功能化硅烷偶联剂乙烯基三乙基氧基硅烷和氨基丙基三乙基氧基硅烷改性棉纤维

Mondal Mih
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引用次数: 9

摘要

以乙烯基三乙基氧基硅烷(VTES)和氨基丙基三乙基氧基硅烷(APTES)为偶联剂,在乙醇/水介质中对棉纤维进行缩聚改性。由于硅烷偶联剂与棉纤维之间的Si-O键具有更高的柔韧性,因此改性棉纤维的拉伸性能、柔软性能、拒水性和抗皱回复率均有所提高。改性棉纤维在水溶液中的膨胀能力下降,影响纤维的整体化学适应性。改性棉纤维的最佳条件是:VTES单体浓度为500%,APTES单体浓度为600%(取决于纤维的重量);VTES的pH为3.5,APTES的pH为5:VTES的乙醇水比为40:60,APTES的乙醇水比为80:20;在室温(30℃)下,纤维液比1:50,VTES和APTES反应时间均为90分钟。改性棉纤维在极性溶剂中溶胀减小,在非极性溶剂中溶胀增大。傅里叶变换红外光谱法用于鉴定含硅分子的掺入。能量分散x射线分析确定了原子硅的数量,这直接反映了它与有机部分的价键。利用扫描电镜和热重分析分别对改性纤维的表面形貌和热行为进行了研究。用活性棕-10和活性橙-14染色水洗和改性棉纤维的可染性测试表明,改性纤维对染料的吸收率相对高于原棉纤维。
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Modification of Cotton Fibre with Functionalized Silane Coupling Agents Vinyltriethoxysilane and Aminopropyltriethoxysilane
Cotton fibre was modified by condensation polymerization with functionalized silane coupling agents like vinyltriethoxysilane (VTES) and aminopropyltriethoxysilane (APTES) in an ethanol/water medium. The modification of cotton fibre enhanced the tensile properties, softness properties, water repellence and wrinkle recovery, due to higher flexibility of the Si-O bond between the silane coupling agents and the cotton fibre. The ability of the modified cotton fibre to swell decreased in an aqueous solution, which affects the overall chemical suitability of the fibre. The optimized condition in which to modify cotton fibre was a monomer concentration of: 500% for VTES and 600% for APTES (depending on the weight of the fibre); pH 3.5 for VTES and 5 for APTES: ethanol-water ratio 40:60 for VTES and 80:20 for APTES; reaction time of 90 minutes both for VTES and APTES at room temperature (30°C), in the fibre-liquor ratio of 1:50. Swelling of the modified cotton fibre decreased in polar solvents and increased in nonpolar solvents. Fourier transform Infrared spectroscopy was used to identify the incorporation of siliconcontaining molecules. Energy Disperse X-ray analysis determined the quantities of atomic silicon which directly reflects its valence bond with organic moieties. Scanning electron microscopy and thermogravimetric analysis were used to investigate the surface morphology and thermal behavior of the modified fibre, respectively. Examination of the dyeability of washed and modified cotton fibres, dyed with Reactive Brown-10 and Reactive Orange-14, showed that the absorption of dye by modified fibre was comparatively higher than that of raw cotton fibre.
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