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Synthesis and Characterization Hierarchical Three-Dimensional TiO2 Structure via Hydrothermal Method

机译:通过水热法的合成和表征分层三维TiO2结构

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TiO2 is one of the most potential candidates due to its fascinating properties for multi-discipline fields.One dimensional nanostructure TiO2 such as nanotube and nanorods has been widely used for many devices technology.Compare with one-dimensional nanostructure TiCh; the hierarchical TiO2 has not been widely applied.Three dimensional TiO2 play a promising role for application in many different fields such as photovoltaics,photocatalytic and a gas sensor.Herein,we report that the hierarchically structures TiO2 have been successfully obtained by the one-pot Hydrothermal process.The growth mechanism of Titania was controlled by Titanium(IV)isopropoxide(TTIP).Ethylene glycol(EG).Hydrochloric acid(HC1).Hexadecyltrimethylammonium bromide(CTAB)molar ratio.TTIP was used as titanium source and CTAB as a soft template.The molar ratio of TTIP.EG.HC1.CTAB was 0.1:0.2:0.4:0.001.Those samples were synthesized using the hydrothermal method at 180 °C for 20 h.The purpose of this work was focused on investigating morphology,crystallite size,crystalline phase,and particle size.The properties of these materials were characterized by X-Ray Diffraction,Energy Dispersive Spectroscopy and Scanning Electron Microscope.It was found all particles exhibited unique spherical morphology which arranged by nanorods and good distribution nanoparticle.The Average size of the sphere has range 1 μm to 3 μm with diameter nanorods 60 nm to 100 nm.The TiO2 spheres were constructed of interconnected nanorods and formed a three dimensional(3D)porous framework.XRD analysis confirmed that sample consisted of pure rutile crystal structure with crystallite size was 50 nm,and EDS revealed an elemental content of Ti 61.03 % and O 38.97 %.
机译:TiO2是由于其迷人的多学科领域的迷人性能,是最具潜在的候选者之一。诸如纳米管和纳米峰的尺寸纳米结构TiO2已广泛用于多维纳米结构TICH的许多设备技术。等级TiO2未被广泛应用。三维TiO2在许多不同的领域中起着有前途的作用,例如光伏,光催化和气体传感器。鼠汀,我们报告了分层结构TiO2已成功通过单锅获得成功获得水热过程。二氧化钛的生长机理由钛(IV)异丙醇(TTIP)。乙二醇(例如)。盐酸(HC1)。羟基氯酸(HCl)。己二烷基三甲基溴化铵(CTAB)摩尔比。用品用作钛源和CTAB作为一个软模板。TTIP.EG.HC1.C1.CTAB的摩尔比为0.1:0.2:0.4:0.001。素在180℃下使用水热法合成样品20小时。本作作品的目的重点是调查形态,微晶尺寸,结晶相和粒度。这些材料的性质以X射线衍射,能量分散光谱和扫描电子显微镜为特征。发现所有颗粒都表现出独特的球形由纳米棒和良好的分布纳米颗粒布置的形态学。球体的平均尺寸为1μm至3μm,直径纳米码60nm至100nm。TiO2球体由互连的纳米棒构成并形成三维(3D)多孔框架.XRD分析证实,具有微晶尺寸的纯金红石晶体结构由纯金红石晶体结构组成为50nm,EDS显示出Ti 61.03%和O 38.97%的元素含量。

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