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Effects of three seeding methods on optimization of temperature, concentration and reaction time on optical properties during growth ZnO nanorods

机译:三种接种方法对温度,浓度和反应时间对ZnO纳米棒生长光学性能的影响

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摘要

Today, use of zinc oxide nanorods is necessary in optoelectronic industry. Therefore, control of growth parameters are affected on zinc oxide nanostructures. In this paper, the effect of different seed methods such as spin coating, vapour liquid solid and spray coating on morphology of surface-crystal plates of zinc oxide nanorods has been investigated. Also, growth of zinc oxide nanorods has been done using new method by use of different concentrations of zinc chloride and ammonia at75, 97 and 110 ℃. Finally, morphology of surface, crystal plates, structure purity and optical properties of zinc oxide nano rods have been examined by changes of reagent concentration, growth solution temperature and reaction time through SEM, XRD, EDAX and photoluminescence analyses. The different optical properties and surface morphology of zinc oxide nanorods were generated differ by change in concentration. By changes of concentration, pH of growth solution has been changed. Therefor influences defects of crystal structure in the visible and ultraviolet region were obtained. Finally, the ideal thermal annealing is 430 ℃. Thermal annealing in vacuum for growth the zinc oxide nano rods at the range of 400-450 ℃ were showed that, the defects are decreased and or increased due this method for growth in the visible and ultraviolet region. The samples prepared by VLS, have visible and ultraviolet region emission. So there are useful for LED application. It is suitable for UV-laser diodes.
机译:今天,在光电工业中必须使用氧化锌纳米棒。因此,生长参数的控制会影响氧化锌纳米结构。本文研究了旋涂,气液固相和喷涂等种种方法对氧化锌纳米棒表面晶体板形貌的影响。另外,已经通过新方法通过在75、97和110℃下使用不同浓度的氯化锌和氨气来生长氧化锌纳米棒。最后,通过SEM,XRD,EDAX和光致发光分析,通过改变试剂浓度,生长液温度和反应时间,研究了氧化锌纳米棒的表面形态,晶体板,结构纯度和光学性质。氧化锌纳米棒的不同光学性质和表面形态随浓度的变化而变化。通过浓度的变化,生长溶液的pH已改变。因此,获得了对可见光和紫外光区域的晶体结构的影响的缺陷。最后,理想的热退火温度是430℃。真空热退火生长的氧化锌纳米棒在400-450℃范围内的结果表明,由于这种方法在可见光和紫外线区域的生长,缺陷减少或增加。通过VLS制备的样品具有可见光区域和紫外线区域。因此对于LED应用很有用。适用于紫外线激光二极管。

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