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Photocatalyst ZnO-doped Bi2O3 powder prepared by spray pyrolysis

机译:喷雾热解法制备光催化剂掺杂ZnO的Bi2O3粉末

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In the present study, nanocrystalline photocatalyst Bi2O3 powders with various ZnO additions were synthesized by spray pyrolysis at 600 (SP600) and 700 degrees C (SP700). The Bi2O3 powder converted from a monoclinic a phase to a tetragonali beta phase at pyrolysis temperatures >= 600 degrees C. The crystallinity of the SP powder increased with the increase in pyrolysis temperature. The morphology of the SP powders was observed to reveal a porous structure. The photocatalytic activity of the Bi2O3-based powder strongly depends on its specific surface area. Based on a constant specific surface area, 5 mol% ZnO addition can significantly increase the photocatalytic efficiency of SP700 Bi2O3, powder from 46% to 86% under visible irradiation for 6 h. Intrinsically, the photocatalytic performance of the SP powder is affected by the crystallite size. Furthermore, the photocatalytic activity of the resulting powders was compared with that of the P25 powder (a commercialized TiO2 powder). The mechanisms for the formations of the porous powders are also delineated. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本研究中,通过在600(SP600)和700摄氏度(SP700)的喷雾热解合成了具有各种ZnO添加量的纳米晶体光催化剂Bi2O3粉末。 Bi2O3粉末在> = 600摄氏度的热解温度下从单斜晶相转变为四方β相。SP粉末的结晶度随热解温度的升高而增加。观察到SP粉末的形态揭示了多孔结构。 Bi2O3基粉末的光催化活性在很大程度上取决于其比表面积。基于恒定的比表面积,添加5 mol%的ZnO可以显着提高SP700 Bi2O3粉末在可见光照射6 h时的光催化效率从46%提高到86%。本质上,SP粉末的光催化性能受微晶尺寸影响。此外,将所得粉末的光催化活性与P25粉末(商业化的TiO 2粉末)的光催化活性进行了比较。还描述了形成多孔粉末的机理。 (C)2014 Elsevier B.V.保留所有权利。

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