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Preparation of cerium zinc oxide nanocomposite derived by hydrothermal route coated on glass and its application in water treatment

机译:玻璃水热途径氧化锌纳米复合材料的制备及其在水处理中的应用

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Ce and Zn oxide nanomaterials were effectively fabricated via one pot green and eco-friendly hydrothermal route. Ce and Zn oxide nanomaterials, terpineol, ethyl cellulose, and double distilled water were grinded and sonicated in four steps for improved coating. An efficient sonication route for improved coating of nanocomposite paste on glass for environmental application was investigated. Better dispersion of nanopaste by sonication for coating on glass was effective. The paste was deposited on the glass substrate through the Doctor Blade-coating and annealed in atmosphere at 550 degrees C. The Ce and Zn oxide nanomaterials were characterized by thermo gravimetric analysis (TG-DTG), Fourier transform infrared, X-ray diffraction, field emission scanning electron microscopy, energy dispersive X-ray spectrometry, and UV-vis diffuse reflectance (DRS) spectroscopy techniques. Experimental studies for photocatalytic degradation of di-azo Naphthol Blue Black (NBB) textile dye from water systems revealed that Ce-Zn coupled oxide nanocomposite coated on glass was more effective in degradation of the dye compared with single Ce and Zn oxide nanomaterials.
机译:Ce和Zn氧化物纳米材料通过一种绿色和环保水热途径有效地制造。 Ce和Zn氧化物纳米材料,萜品醇,乙基纤维素和双蒸馏水被研磨,并在四个步骤中研磨并超声处理,以改善涂层。研究了一种高效的超声处理途径,用于改进玻璃环境应用玻璃玻璃涂层。更好地通过超声处理玻璃涂层的纳米盖子是有效的。将糊状物通过刮刀涂层沉积在玻璃基板上,并在550℃下在大气中退火。通过热重量分析(TG-DTG),傅里叶变换红外,X射线衍射表征CE和Zn氧化物纳米材料。场发射扫描电子显微镜,能量分散X射线光谱和UV-VI扩散反射率(DRS)光谱技术。水系统二氮杂萘酚蓝黑色(NBB)纺织染料光催化降解的实验研究表明,与单一CE和Zn氧化物纳米材料相比,涂覆在玻璃上的Ce-Zn偶联氧化物纳米复合材料在染料的降解中更有效。

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