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首页> 外文期刊>Science of advanced materials >A Study of the Precursors and Photoactivity of Nanostructures of Ti Oxides Synthesized by the Alkaline Hydrothermal Method
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A Study of the Precursors and Photoactivity of Nanostructures of Ti Oxides Synthesized by the Alkaline Hydrothermal Method

机译:碱水热法合成钛氧化物纳米结构的前驱体和光活性的研究

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摘要

The present study describes the synthesis, characterization and photocatalytic potential of Ti oxide nanostructures of various morphologies and crystalline phases that were synthesized from 4 different precursors by the alkaline hydrothermal method. The materials were characterized by mainly X-ray diffraction (XRD), Raman spectroscopy, scanning and transmission electron microscopy (SEM and TEM), thermogravimetric analysis (TGA) and X-ray absorption spectroscopy (XAS). Also, photocatalytic potential was assessed by rhodamine B photodegradation. The materials obtained from peroxytitanium complexes (PTCs) exhibited a strong dependence on the concentration of KOH ([KOH]) used for synthesis. The pre-formed sheets of the PTCs were critical to the formation of nanostructures such as nanoribbons, and they were also compatible with the rolling up process, which can be utilized to form structures such as nanorods, nanowires or nanotubes. In the rhodamine photodegradation tests, TiO_2 anatase nanostructures with six-coordinated Ti were more effective than the titanate ones (five-coordinated), despite having a smaller surface area and fewer OH groups. The lower photoactivity of the titanates was attributed to the presence of five-coordinated titanium species (TiO_5), which may act as electron-hole recombination centers. Furthermore, the material with a mixture of TiO_2/titanate was shown to be promising for photocatalytic applications.
机译:本研究描述了碱性水热法从4种不同的前体合成的各种形态和晶相的Ti氧化物纳米结构的合成,表征和光催化潜力。该材料的主要特征是X射线衍射(XRD),拉曼光谱,扫描和透射电子显微镜(SEM和TEM),热重分析(TGA)和X射线吸收光谱(XAS)。另外,通过若丹明B的光降解来评估光催化潜力。从过氧钛配合物(PTC)获得的材料表现出对用于合成的KOH([KOH])浓度的强烈依赖性。 PTC的预成型片对于纳米结构(如纳米带)的形成至关重要,并且它们也与卷绕工艺兼容,该工艺可用于形成纳米棒,纳米线或纳米管等结构。在罗丹明光降解试验中,尽管具有较小的表面积和较少的OH基,但具有六配位Ti的TiO_2锐钛矿纳米结构比钛酸酯(五配位)更有效。钛酸盐的较低的光活性归因于五配位的钛物质(TiO_5)的存在,其可以充当电子-空穴复合中心。此外,已证明具有TiO_2 /钛酸酯混合物的材料有望用于光催化应用。

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