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Study of thermal stability of (3-aminopropyl) trimethoxy silane-grafted titanate nanotubes for application as nanofillers in polymers

机译:(3-氨基丙基)三甲氧基硅烷接枝的钛酸酯纳米管的热稳定性研究

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Protonated titanate nanotubes (TiNT-H) were surface-modified with (3-aminopropyl)trimethoxy silane (APTMS) by a novel method suitable for the syntheses of large amounts of materials at a low cost. The usage of prepared nanotubes for polymer reinforcement was studied. Since the thermal stability of the nanofiller was important to preserve its functional properties, its stability was studied by in situ high-temperature measurements. The most thermally stable nanotubes were silanized for 20 min and used for the preparation of epoxy-based nanocomposites. The nanofiller formed smaller (a few hundred nm) and larger (a few μm) aggregates in the polymer matrix, and the amount of aggregates increased as the nanofiller content increased. The APTMSmodified titanate nanotubes bonded well with the epoxy matrix since amine groups on the TiNT's surface can react with an epoxy group to form covalent bonds between the matrix and the nanofiller. A very small addition (0.19–1.52 wt%) of the nanotubes significantly increased the glass transition temperature and the modulus in the rubbery state of the epoxy-based polymer. Smaller nanofiller content leads to a larger increase in these parameters and therefore better dynamic mechanical properties due to the smaller amount of large aggregates. APTMS-modified titanate nanotubes have proven to be a promising nanofiller in epoxy-based nanocomposites.
机译:通过(3-氨基丙基)三甲氧基硅烷(APTMS),通过适用于低成本合成大量材料的新型方法,对质子化的钛酸酯纳米管(TiNT-H)进行了表面改性。研究了制备的纳米管用于聚合物增强的用途。由于纳米填料的热稳定性对于保持其功能特性很重要,因此通过现场高温测量研究了其稳定性。将最热稳定的纳米管硅烷化20分钟,并用于制备环氧基纳米复合材料。纳米填料在聚合物基质中形成较小(几百纳米)和较大(几微米)的聚集体,并且随着纳米填料含量的增加,聚集体的数量增加。 APTMS改性的钛酸酯纳米管与环氧基质结合良好,因为TiNT表面的胺基可以与环氧基反应,从而在基质和纳米填料之间形成共价键。少量添加(0.19–1.52 wt%)的纳米管会显着提高玻璃化温度和环氧基聚合物的橡胶态模量。较小的纳米填料含量导致这些参数的较大增加,因此由于较小的大聚集体数量,因此具有更好的动态机械性能。 APTMS改性的钛酸酯纳米管已被证明是基于环氧的纳米复合材料中一种有前途的纳米填料。

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