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Enhanced Photocatalytic Activity of Iron-Doped ZnO Nanowires for Water Purification

机译:铁掺杂ZnO纳米线对水净化的增强光催化活性

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In order to improve the photocatalytic efficiency of ZnO nanowires, iron-doped ZnO nanowires (ZnO:Fe NWs) were successfully synthesized. The morphology, optical properties and photocatalytic performance of ZnO:Fe NWs were studied by scanning electron microscopy (SEM), UV-Visible spectrophotometry and photoluminescence spectroscopy (PL), respectively. The SEM observations showed that the morphology of the ZnO NWs was not modified by iron doping, but the band gap was reduced from 3.29 eV for ZnO NWs to 3.25 eV for ZnO:Fe NWs. This band gap reduction allows the semiconductor to harvest more photons to excite more electrons in the valence band; subsequently, resulting in an improvement of the degradability of the understudied organic dyes: methylene blue (MB), methyl orange (MO), and acid red 14 (AR14). The photocatalytic study showed that the photo-degradation rate of the MB, MO, and AR14 was improved 9%, 20%, and 5% respectively by 1% iron doping in the ZnO NWs.
机译:为了提高ZnO纳米线的光催化效率,成功地合成了铁掺杂ZnO纳米线(ZnO:Fe NWs)。用扫描电子显微镜(SEM),紫外可见分光光度法和光致发光光谱法(PL)研究了ZnO:Fe NWs的形貌,光学性质和光催化性能。 SEM观察表明,ZnO NWs的形态没有被铁掺杂改变,但是带隙从ZnO NWs的3.29eV降低到ZnO:Fe NWs的3.25eV。带隙的减小使半导体能够收集更多的光子,从而激发价带中的更多电子。随后,改进了被研究的有机染料的可降解性:亚甲基蓝(MB),甲基橙(MO)和酸性红14(AR14)。光催化研究表明,通过在ZnO NW中掺杂1%的铁,MB,MO和AR14的光降解率分别提高了9%,20%和5%。

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