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Titanate nanotubes for reinforcement of a poly(ethylene oxide)/chitosan polymer matrix

机译:钛酸酯纳米管,用于增强聚环氧乙烷/壳聚糖聚合物基体

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Soft polyethylene oxide (PEO)/chitosan mixtures, reinforced with hard titanate nanotubes (TiNTs) by co-precipitation from aqueous solution, have been used to produce compact coatings by the 'drop-cast' method, using water soluble PEO polymer and stable, aqueous colloidal solutions of TiNTs. The effects of the nanotube concentration and their length on the hardness and modulus of the prepared composite have been studied using nanoindentation and nanoscratch techniques. The uniformity of TiNT dispersion within the polymer matrix has been studied using transmission electron microscopy (TEM). A remarkable increase in hardness and reduced Young's modulus of the composites, compared to pure polymer blends, has been observed at a TiNT concentration of 25 wt %. The short (up to 30 min) ultrasound treatment of aqueous solutions containing polymers and a colloidal TiNT mixture prior to drop casting has resulted in some improvements in both hardness and reduced Young's modulus of dry composite films, probably due to a better dispersion of ceramic nanotubes within the matrix. However, further (more than 1 h) treatment of the mixture with ultrasound resulted in a deterioration of the mechanical properties of the composite accompanied by a shortening of the nanotubes, as observed by the TEM.
机译:通过从水溶液中共沉淀而用硬钛酸酯纳米管(TiNTs)增强的软聚环氧乙烷(PEO)/壳聚糖混合物,已通过“滴铸”法使用水溶性PEO聚合物且稳定, TiNTs的胶体水溶液。使用纳米压痕和纳米划痕技术研究了纳米管浓度及其长度对制备的复合材料硬度和模量的影响。 TiNT分散在聚合物基质中的均匀性已使用透射电子显微镜(TEM)进行了研究。与纯聚合物共混物相比,在25%(重量)的TiNT浓度下,复合材料的硬度显着提高,杨氏模量降低。在滴铸之前,对含有聚合物和胶体TiNT混合物的水溶液进行短暂的超声处理(最多30分钟),可以使干燥的复合膜的硬度有所改善,杨氏模量降低,这可能是由于陶瓷纳米管的分散性更好在矩阵内。然而,如通过TEM观察到的,用超声进一步(超过1小时)处理混合物导致复合材料的机械性能的劣化,同时纳米管的缩短。

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