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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Large-Scale Synthesis of TiO_2 Nanorods via Nonhydrolytic Sol-Gel Ester Elimination Reaction and Their Application to Photocatalytic Inactivation of E.coli
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Large-Scale Synthesis of TiO_2 Nanorods via Nonhydrolytic Sol-Gel Ester Elimination Reaction and Their Application to Photocatalytic Inactivation of E.coli

机译:非水解溶胶-凝胶酯化反应大规模合成TiO_2纳米棒及其在大肠杆菌光催化灭活中的应用

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A simple method of synthesizing a large quantity of TiO_2 nanorods was developed.A nonhydrolytic sol-gel reaction between titanium(IV)isopropoxide and oleic acid at 270 deg C generated 3.4 nm(diameter)x 38 nm(length)sized TiO2 nanocrystals.The transmission electron microscopic image showed that the particles have a uniform diameter distribution.X-ray diffraction and selected-area electron diffraction patterns combined with high-resolution transmission electron microscopic image showed that the TiO_2 nanorods are highly crystalline anatase crystal structure grown along the [001] direction.The diameters of the TiO_2 nanorods were controlled by adding 1-hexadecylamine to the reaction mixture as a cosurfactant.TiOz nanorods with average sizes of 2.7 nm x 28 nm,2.2 nm x 32 nm,and 2.0 nm x 39 nm were obtained using 1,5,and 10 mmol of 1-hexadecylamine,respectively.The optical absorption spectrum of the TiO_2 nanorods exhibited that the band gap of the nanorods was 3.33 eV at room temperature,which is 130 meV larger than that of bulk anatase(3.2 eV),demonstrating the quantum confinement effect.Oleic acid coordinated on the nanorod surface was removed by the reduction of the carboxyl group of oleic acid,and the Brunauer-Emmett-Teller surface area of the resulting naked TiO_2 nanorods was 198 m~2/g.The naked TiO_2 nanorods exhibited higher photocatalytic activity than the P-25 photocatalyst for the photocatalytic inactivation of E.coli.
机译:研究了一种简单的合成大量TiO_2纳米棒的方法。异丙醇钛(IV)与油酸在270℃下进行非水解溶胶-凝胶反应,生成3.4 nm(直径)x 38 nm(长)尺寸的TiO2纳米晶体。 X射线衍射和选择区域电子衍射图谱与高分辨率透射电子显微镜图像相结合表明TiO_2纳米棒是沿[001]生长的高度结晶的锐钛矿晶体结构。通过向反应混合物中添加1-十六烷基胺作为助表面活性剂来控制TiO_2纳米棒的直径,得到平均尺寸为2.7 nm x 28 nm,2.2 nm x 32 nm和2.0 nm x 39 nm的TiOz纳米棒。分别使用1,5和10 mmol的1-十六烷基胺。TiO_2纳米棒的光吸收光谱表明,室温下纳米棒的带隙为3.33 eV,其比本体锐钛矿(3.2 eV)大130 meV,证明了量子限制效应。通过还原油酸的羧基和Brunauer-Emmett-Teller表面积,去除了纳米棒表面配位的油酸。 TiO_2纳米裸棒的光催化活性为198m〜2 /g。TiO_2纳米裸棒对大肠杆菌的光催化灭活性能高于P-25光催化剂。

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