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ZnO Nanorods with Low Intrinsic Defects and High Optical Performance Grown by Facile Microwave-Assisted Solution Method

机译:微波辅助溶液法生长低内在缺陷和高光学性能的ZnO纳米棒

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Vertically aligned ZnO nanorods were grown at 90 degrees C by both microwave synthesis and traditional heated water bath method on Si (100) substrate with a precoated ZnO nanoparticle seed layer. A detailed comparison in the morphology, defects, and optical properties of the ZnO nanorods grown by the two methods across the pH range of 10.07-10.9 for microwave synthesis and conventional heated water bath method was performed using scanning electron microscopy, photoluminescence, and X-ray photoelectron spectroscopy. The results show that the microwave route leads to more uniformly distributed nanorods with a lower density of native defects of oxygen interstitials and zinc vacancies. The microwave synthesis presents a promising new approach of fabricating metal oxide nanostructures and devices toward green applications.
机译:垂直排列的ZnO纳米棒通过微波合成和传统的热水浴法在90°C的条件下在具有预涂层ZnO纳米粒子种子层的Si(100)衬底上生长。使用扫描电子显微镜,光致发光和X-射线光谱法,对两种方法在10.07-10.9的pH范围内生长的ZnO纳米棒的形貌,缺陷和光学性质进行了详细的比较,以进行微波合成和常规的热水浴法。射线光电子能谱。结果表明,微波途径导致纳米棒分布更均匀,氧间隙和锌空位的天然缺陷密度更低。微波合成为绿色应用提出了一种制造金属氧化物纳米结构和器件的有前途的新方法。

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