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A comparative study on the morphological features of highly ordered MgO:AgO nanocube arrays prepared via a hydrothermal method

机译:水热法制备高序MgO:AgO纳米立方体阵列的形态学特征比较研究

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摘要

II-VI semiconductor nanotubes are a recently developed class of nanomaterials whose unique photophysical properties are helping to create a new generation of nanomaterials in the field of photonics and microelectronics. In this report, we examine the progress in adapting these nanomaterials for several optoelectronics applications followed by characterization studies. Magnesium oxide and silver oxide (MgO:AgO) nanoparticles were synthesized using a hydrothermal method by taking magnesium nitrate, silver oxide and glycine. X-ray diffraction (XRD) results showed that the peaks are consistent with a pure phase cubic structure of MgO. The XRD pattern also confirmed the crystallinity and phase purity of the sample. Nanocrystal sizes were found to be up to 25 nm as revealed by XRD and HRTEM. Photoluminescence measurement (PL) reveals the systematic shift of the emission band towards lower wavelength thereby ascertaining the quantum confinement effect.
机译:II-VI半导体纳米管是最近开发的一类纳米材料,其独特的光物理特性正在帮助在光子学和微电子学领域创建新一代的纳米材料。在本报告中,我们研究了将这些纳米材料应用于多种光电应用的进展,然后进行了表征研究。采用水热法,以硝酸镁,氧化银和甘氨酸为原料,合成了氧化镁和氧化银(MgO:AgO)纳米颗粒。 X射线衍射(XRD)结果表明,这些峰与MgO的纯相立方结构一致。 XRD图谱也证实了样品的结晶度和相纯度。如XRD和HRTEM所揭示,发现纳米晶体的尺寸最大为25nm。光致发光测量(PL)揭示了发射带向较低波长的系统转移,从而确定了量子限制效应。

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