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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Swift heavy ion induced effects on structural, optical and photo-catalytic properties of Ag irradiated vertically aligned ZnO nanorod arrays
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Swift heavy ion induced effects on structural, optical and photo-catalytic properties of Ag irradiated vertically aligned ZnO nanorod arrays

机译:快速重离子诱导对Ag垂直取向的ZnO纳米棒阵列的结构,光学和光催化性能的影响

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Development of 1D array platforms for environmental remediation is of vitality in the current scenario where water bodies are overborne by organic pollutants. ZnO nanorod arrays (ZNRA) were synthesized using solution growth method and were irradiated by 120 MeV Ag ions at various ion fluences of 1E11, 5E11, 1E12 and 5E12 ions/cm(2). The structural, morphological and optical properties were studied using X-ray diffraction (XRD), Field Emission Scanning Microscopy (FESEM), UV and Photoluminescence spectroscopy respectively. While the FESEM analysis shows that the length of ZNR is in the range of similar to 4 mu m and with a diameter ranging from 100 rim to 350 nm, the XRD results confirmed the formation of wurtzite hexagonal structure (0 0 2) of ZnO. The XRD peak broadened with the increase of Ag ion fluences from 1E11 to 5E12 ions/cm(2). The UV absorption spectra show a red shift of the band edge absorption with increase in ion fluences and bandgap decreases from 3.24 eV to 2.94 eV. The photocatalytic activities of Ag irradiated ZNRA were evaluated through the degradation of methylene blue under the visible region of light irradiation. The degradation efficiencies for pristine and 5E12 ions/cm(2) Ag irradiated ZNRA were 54.24% and 87.98% respectively for methylene blue after 120 min. These photocatalytic results show that the degradation efficiency increases with the Ag ion irradiations. The possible mechanism behind this enhancement due to the Ag ion irradiation is also discussed.
机译:在目前水体被有机污染物覆盖的情况下,开发用于环境修复的一维阵列平台至关重要。使用溶液生长法合成了ZnO纳米棒阵列(ZNRA),并以120 MeV Ag离子以1E11、5E11、1E12和5E12离子/ cm2的不同离子通量辐照(2)。分别使用X射线衍射(XRD),场发射扫描显微镜(FESEM),紫外和光致发光光谱学研究了结构,形态和光学性质。 FESEM分析表明,ZNR的长度在4μm左右,直径在100 rim至350 nm之间,而XRD结果证实了ZnO纤锌矿六角形结构(0 0 2)的形成。 XRD峰随着从1E11到5E12离子/ cm(2)的银离子注量的增加而变宽。紫外吸收光谱显示,随着离子通量的增加,能带边缘吸收发生红移,带隙从3.24 eV降低到2.94 eV。通过在可见光照射区域内亚甲基蓝的降解,评价了Ag辐照的ZNRA的光催化活性。 120分钟后,原始和5E12离子/ cm(2)Ag辐照的ZNRA的降解效率分别为54.24%和87.98%。这些光催化结果表明降解效率随Ag离子辐照而增加。还讨论了由于银离子辐照而导致这种增强的可能机理。

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