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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The bismuth oxyhalide family: thin film synthesis and periodic properties
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The bismuth oxyhalide family: thin film synthesis and periodic properties

机译:氧化铋家族:薄膜合成和周期性

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摘要

Bismuth oxyhalides (BiOX, where X = F, Cl, Br, I) are interesting materials due to their layered structure, which can be useful for different applications. In this work, we present the synthesis of the complete BiOX family in the thin film form. The tetragonal phase Bi2O3 film deposited onto a glass substrate was transformed into BiOF, BiOCl or BiOBr by a simple immersion at ambient temperature in a halide (X = F, Cl, Br) containing solution. For these films, a residual phase from the oxide was present and for BiOF another phase (tentatively identified as Bi7O5F11) was present too. For the BiOI film synthesis, an iodine and bismuth containing solution was sprayed onto the glass substrate heated at 275 degrees C and a pure phase was obtained. Microstructural and morphological characterization was performed by X-ray diffraction and scanning electron microscopy, while the chemical environment was studied by X-ray photoelectron spectroscopy. Optical and photocatalytic properties were also obtained. The physical and chemical characteristics of the BiOX films follow a correlation with the atomic radius of the halogen atom incorporated into the corresponding lattice. All the BiOX films showed a photocatalytic response for the photodiscoloration of indigo carmine dye under simulated sunlight irradiation in an alkaline medium. The photocatalytic reactions occurred via 2 proton-electron transfer from the oxide or oxyhalide to the adsorbed IC dye, favoring its reduction to the corresponding leuco IC form.
机译:氧化铋(Biox,其中X = F,Cl,Br,I)是由于其层状结构的有趣材料,这对于不同的应用可能是有用的。在这项工作中,我们介绍了薄膜形式的完整Biox家族的合成。通过在含有溶液的卤化物(X = F,Cl,Br)的环境温度下,将沉积在玻璃基板上的四方相Bi2O3薄膜在BioF,BioCl或BioBR中转化到BioF,BioCl或BioBR中。对于这些薄膜,存在来自氧化物的残余相,并且对于BioF也存在另一种相位(暂定鉴定为Bi7O5F11)。对于生物薄膜合成,将含碘和含铋的溶液喷射到在275℃加热的玻璃基板上,得到纯相。通过X射线衍射和扫描电子显微镜进行微观结构和形态学表征,而X射线光电子能谱研究了化学环境。还获得了光学和光催化性质。生物氧膜的物理和化学特性遵循与掺入相应晶格中的卤素原子的原子半径的相关性。所有Biox膜都显示出在碱性介质中模拟阳光照射下靛蓝胭脂红染料的光催化反应。光催化反应通过2质子 - 电子从氧化物或氧化物转移到吸附的IC染料中,从而有利于其还原到相应的Leuco IC形式。

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