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Facile synthesis of 3D flower-like mesoporous Ce-ZnO at room temperature for the sunlight-driven photocatalytic degradations of RhB and phenol

机译:室温下阳光驱动的光催化降解rhB和苯酚的3D花样中孔Ce-ZnO的舒适合成

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摘要

A 3D flower-like mesoporous Ce doped ZnO composite composed of nanosheets was prepared by a facile, one-step wet chemical method at room temperature. It was found that the moderate Ce doping can improve the light absorption of ZnO. The photocatalytic activities of the samples were studied by the degradation of Rhodamine B (RhB) and phenol under stimulated sunlight. The 1% mole ratio of Ce doped ZnO composites (denoted as CZ1) showed higher photocatalytic performance than other samples, where 85.1% of RhB and 69.6% of phenol can be removed within 125 min and 120 min, respectively. The Ce4+ doped in the lattice of ZnO can act as the electron trapping sites, which effectively improve the electron-hole separation. In addition, it was also found the annealing temperature had effect on the morphology and structure of Ce doped ZnO. The photocatalytic performance can be further enhanced at proper annealing temperature (500 degrees C) due to the increase of ZnO crystallinity with maintained flower-like structure and the formation of CeO2-ZnO heterojunction at their tight interface promoting the separation of photogenerated electron-hole pairs. (C) 2019 Elsevier Inc. All rights reserved.
机译:由纳米片组成的3D花型介孔Ce掺杂ZnO复合材料由室温下的一步式湿化学方法制备。发现中度Ce掺杂可以改善ZnO的光吸收。通过刺激阳光下的罗丹明B(RHB)和苯酚的降解研究样品的光催化活性。 Ce掺杂ZnO复合材料的1%摩尔比(表示为CZ1)显示出比其他样品更高的光催化性能,其中85.1%的RHB和69.6%的苯酚分别在125分钟内和120分钟内除去。 ZnO晶格中的CE4 +掺杂在ZnO的晶格中可以充当电子捕获位点,有效地改善了电子孔分离。此外,还发现退火温度对Ce掺杂ZnO的形态和结构有影响。由于ZnO结晶度的增加,在适当的退火温度(500℃)中,可以进一步增强光催化性能,其保持花状结构和它们的紧密界面在其紧密界面处的CEO2-ZnO异质结的形成促进光生电孔对的分离。 (c)2019 Elsevier Inc.保留所有权利。

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