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Nanostructured polymer–titanium composites and titanium oxide through polymer swelling in titania precursor

机译:纳米结构的聚合物-钛复合材料和二氧化钛通过二氧化钛前体中的聚合物溶胀

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摘要

Polymer (XAD7HP)/Ti4+ nanocomposites were prepared through the swelling of polymer in titanium (IV) ethoxide as a titanium dioxide precursor. The nanocomposite beads exhibit relatively high porosity different than the porosity of the initial polymer. Thermal treatment of composite particles up to 200 °C in vacuum causes the change of their internal structure. At higher temperature, the components of composite become more tightly packed. Calcination at 600 °C and total removal of polymer produce spherically shaped TiO2 condensed phase as determined by XRD. Thermally treated composites show the substantial change of pore dimensions within micro- and mesopores. The presence of micropores and their transformation during thermal processing was studied successfully by positron annihilation lifetime spectroscopy (PALS). The results derived from PALS experiment were compared with those obtaining from low-temperature nitrogen adsorption data.
机译:聚合物(XAD7HP)/ Ti 4 + 纳米复合材料是通过聚合物在乙醇钛(IV)中作为二氧化钛前驱体溶胀而制备的。纳米复合材料珠粒显示出与初始聚合物的孔隙率不同的相对较高的孔隙率。真空中高达200°C的复合颗粒的热处理会导致其内部结构发生变化。在更高的温度下,复合材料的组分变得更紧密地堆积。通过XRD测定,在600°C下煅烧并完全除去聚合物会产生球形TiO2冷凝相。热处理过的复合材料显示出微孔和中孔内孔尺寸的显着变化。通过正电子an没寿命谱(PALS)成功研究了微孔的存在及其在热处理过程中的转变。将来自PALS实验的结果与从低温氮吸附数据获得的结果进行比较。

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