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Synthesis and Characterization of ZnO micro-tubes

机译:ZnO微管的合成与表征

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ZnO microtubes were synthesized by two step process, (i) synthesis of ZnO microrods and (ii) etching the microrods to form microtubes. The ZnO microrods are synthesized by the simple solution growth method using the zinc chloride and hexamine as a precursors at around 95 °C. Using the KOH as the etchant the ZnO microrods have etched into ZnO microtubes. ZnO micro-tube formation was studied as a function of KOH concentration and etching time. At low KOH concentration the tubes were not completely etched whereas at higher concentration the tube walls were damaged. ZnO tubes were characterized by X-ray diffraction, scanning electron microscopy, UV-vis spectrophotometer and room temperature photoluminescence (PL) measurement. From the UV absorption spectra and PL spectra reveals the presence (Oxygen vacancies related) of defect states due to KOH etching. The as-synthesized Zinc Oxide micro tubes have a diameter of ~600 nm, wall thickness of 30-40 nm, and length of ~7 μm. ZnO microtubes were tested as the catalyst for the photo degradation of the methylene blue (MB) dye. The result shows the photo degradation efficiency of the tubes are twice faster compared to that of rods, this is due to high surface area associated with the tubes.
机译:通过两个步骤方法合成ZnO微管,(i)合成ZnO Microrods的合成和(ii)蚀刻微摩擦以形成微管。通过使用氯化锌和六胺作为前体的简单溶液生长方法合成ZnO微粉,其在约95℃约为95℃。使用KOH作为蚀刻剂,ZnO Microrods蚀刻到ZnO Microtubes中。研究了ZnO微管形成作为KOH浓度和蚀刻时间的函数。在低KOH浓度下,管道未被完全蚀刻,而在较高浓度下,管壁损坏。通过X射线衍射,扫描电子显微镜,UV-Vis分光光度计和室温光致发光(PL)测量来表征ZnO管。来自紫外吸收光谱和PL光谱揭示了由于KOH蚀刻引起的缺陷状态的存在(氧空位)。作为合成的氧化锌微管的直径为〜600nm,壁厚为30-40nm,长度为约7μm。测试ZnO微管作为亚甲基蓝(MB)染料的光降解的催化剂。结果表明,与杆的相比,管的照片劣化效率是两倍,这是由于与管相关的高表面积。

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