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Preparation of nanoporous titania spherical nanoparticles

机译:纳米多孔二氧化钛球形纳米粒子的制备

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Preparation of nanoporous titania particles from well-defined titania-octadecylamine (titania-ODA) hybrid spherical particles with 450 nm in size, which were prepared by the method reported previously (Chem. Commun.; 2009, pp. 6851-6853 [39]; RSC Adv.; 2012, vol. 2, pp. 1343-1349 [40]), was studied. ODA was removed by solvent extraction with acidic ethanol to obtain nanoporous titania particles and subsequent calcination led to the formation of nanoporous titania particles with the nanopore size ranging from 2 to 4 nm depending on the calcination temperature. The as-synthesized titania was amorphous and was transformed into anatase (at around 300 °C) and rutile (at around 600 °C) by the heat treatment. The phase transition behavior was discussed in comparison with that of as-synthesized titania-ODA particles without ODA removal. Spherical particles of titania-ODA hybrids with 70 nm in size were also transformed into nanoporous titania particles composed of anatase crystallites by the washing and calcination at 500 °C for 1 h.
机译:由尺寸明确的二氧化钛-十八烷基胺(titania-ODA)混合球形颗粒制备纳米多孔二氧化钛颗粒,该混合球形颗粒的尺寸为450 nm,该方法是通过先前报道的方法制备的(Chem。Commun。; 2009,pp。6851-6853 [39])。 ; RSC Adv。; 2012年,第2卷,第1343-1349页[40])。通过用酸性乙醇进行溶剂萃取除去ODA,从而获得纳米多孔二氧化钛颗粒,并且随后的煅烧导致形成纳米孔尺寸的纳米多孔二氧化钛颗粒,其取决于煅烧温度为2-4nm。合成后的二氧化钛是无定形的,并通过热处理转化为锐钛矿(约300°C)和金红石(约600°C)。与未经ODA去除的合成二氧化钛-ODA颗粒的相变行为进行了讨论。通过洗涤和在500°C下煅烧1 h,将尺寸为70 nm的二氧化钛-ODA杂化体的球形颗粒转变为由锐钛矿微晶组成的纳米多孔二氧化钛颗粒。

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