首页> 外文期刊>International Nano Letters >One-pot hydrothermal synthesis and characterization of magnetic nanocomposite of titania-deposited copper ferrite/ferrite oxide for photocatalytic decomposition of methylene blue dye
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One-pot hydrothermal synthesis and characterization of magnetic nanocomposite of titania-deposited copper ferrite/ferrite oxide for photocatalytic decomposition of methylene blue dye

机译:一锅水热合成二氧化钛沉积的亚铁蓝铜/铁氧体磁性纳米复合材料的光催化分解亚甲基蓝染料

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The pure titania (TiO_(2)) and the heterogeneous ternary magnetic nanocomposite of copper ferrite/ferrite oxide (CuFe_(2)O_(4)/Fe_(2)O_(3)) deposited by titanium dioxide (TiO_(2)) were fabricated using a facile one-pot hydrothermal synthesis for the photocatalytic decomposition of methylene blue (MB) dye, under visible light. The nanocomposite was encoded as TCF in this work, where T stands for TiO_(2), C for CuFe_(2)O_(4)and F for Fe_(2)O_(3). Various techniques such as powder X-ray diffraction (PXRD), field emission scanning electron microscopy (FESEM), energy-dispersive X-ray spectroscopy, diffuse reflectance spectroscopy, nitrogen physisorption, and vibrational sample magnetometry (VSM) were used to characterize the prepared samples. The PXRD data showed that the samples had pure anatase structure and the average crystal size of anatase TiO_(2)in the pure titania and ternary nanocomposite were calculated 147 ? and 135 ?, respectively. The nitrogen physisorption analysis data showed that the pore diameter was increased from 10.6?nm in pure titania to 16.0?nm in TCF. The pore volume was also increased from 0.316 in titania to 0.383?cm~(3)/g in TCF sample. It also increased the typical magnitude of the mesopores’ diameter and volume per weight but it reduced the specific surface area of the samples. The VSM analysis of the ternary nanocomposite showed a considerable magnetic property of the sample (1.99?emu/g), qualifying it as a paramagnetic material. The photocatalytic decomposition efficiency of MB reached 77% and 68% in the presence of pure titania and TCF ternary nanocomposite, after 240-min exposure by the visible light. Active species trapping experiments showed that the major active species responsible for the photodecomposition of MB in the presence of TCF are O 2 · - documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$${ext{O}}_{2}^{ cdot - }$$end{document} radicals and holes (h~(+)).
机译:二氧化钛(TiO_(2))沉积的纯二氧化钛(TiO_(2))和铜铁氧体/铁氧体氧化物(CuFe_(2)O_(4)/ Fe_(2)O_(3)的异质三元磁性纳米复合材料使用方便的一锅水热合成法在可见光下对亚甲基蓝(MB)染料进行光催化分解制备了这些化合物。在这项工作中,纳米复合材料被编码为TCF,其中T代表TiO_(2),C代表CuFe_(2)O_(4),F代表Fe_(2)O_(3)。粉末X射线衍射(PXRD),场发射扫描电子显微镜(FESEM),能量色散X射线光谱法,漫反射光谱法,氮物理吸附和振动样品磁力法(VSM)等各种技术被用来表征所制备的样品。 PXRD数据表明,样品具有纯的锐钛矿结构,并且在纯二氧化钛和三元纳米复合物中的锐钛矿型TiO_(2)的平均晶体尺寸计算为147Ω·m。和135Ω。氮的物理吸附分析数据表明,孔径从纯二氧化钛中的10.6?nm增加到TCF中的16.0?nm。孔体积也从二氧化钛中的0.316增加到TCF样品中的0.383?cm〜(3)/ g。它也增加了中孔直径和单位重量体积的典型大小,但减小了样品的比表面积。三元纳米复合材料的VSM分析显示样品具有相当大的磁性(1.99?emu / g),使其成为顺磁性材料。在可见光下暴露240分钟后,在纯二氧化钛和TCF三元纳米复合材料存在下,MB的光催化分解效率分别达到77%和68%。活性物种捕获实验表明,在TCF存在下,负责MB光分解的主要活性物种为O 2·- documentclass [12pt] {minimal} usepackage {amsmath} usepackage {wasysym} usepackage {amsfonts} usepackage {amssymb} usepackage {amsbsy} usepackage {mathrsfs} usepackage {upgreek} setlength { oddsidemargin} {-69pt} begin {document} $$ { text {O}} _ {2} ^ { cdot-} $$ end {document}部首和空位(h〜(+))。

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