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Mn-doped ZnO Micro and Nanocrytals: Synthesis, Characterization and Properties

机译:Mn-掺杂的ZnO微型和纳米晶体:合成,表征和性质

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The development of highly sensitive, selective, reliable, low power and compact sensing devices to detect gas is of major importance for terrestrial and space applications. The gas response to different gases and chemicals is related to a great extent to the surface state and morphology of the materials. Zinc oxide (ZnO) is a direct wide band gap semiconductor with an energy gap of ~3.37 eV and a large exciton binding energy of ~60 meV at room temperature (RT) is a promising candidate for functional component for devices and materials in chemical and gas sensors and so on. ZnO nanostructures with various interesting structures and properties have been synthesized, such as nanoparticles, nanorods, nanobelts, nanocombs, nanowires, tetrapod nanostructures. Mn-doped hexagonal (ZnO) semiconductor micro and nanostructures have been synthesized by a simple one-step aqueous solution method at relatively low temperature. X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray analysis (EDX) and photoluminescence spectroscopy (PL) have been used to characterize the samples in detail. The XRD studies revealed that Mn doped ZnO micro and nanostructures had wurtzite structure (hexagonal). The as-synthesized ZnO micro and nanostructures consist of very uniform and no secondary phase is observed. X-ray diffraction and EDX results provide the evidence that Mn is incorporated into the ZnO crystals. A strong and wide ultraviolet emission has been observed for the Mn doped ZnO micro and nanocrystals as evidenced by the photoluminescence spectra at room temperature. PL spectra reveals that as synthesized samples are highly pure and crystalline. Magnetism in these samples was also studied by using vibrating sample magnetometer.
机译:用于检测气体的高度敏感,选择性,可靠,低功率和紧凑的传感装置的开发是对地面和空间应用的主要重要性。对不同气体和化学品的气体反应在很大程度上与材料的表面状态和形态有关。氧化锌(ZnO)是具有〜3.37eV的能隙的直接宽带隙半导体,室温(RT)在室温(RT)的大〜60meV的大激子结合能是用于化学设备和材料的功能部件的有希望的候选者气体传感器等等。已经合成了具有各种有趣结构和性质的ZnO纳米结构,例如纳米颗粒,纳米棒,纳米核,纳米剧,纳米线,Tetrapod纳米结构。在相对低的温度下,通过简单的一步水溶液方法合成了Mn掺杂的六方己醛(ZnO)半导体微且纳米结构。 X射线衍射(XRD),扫描电子显微镜(SEM),能量分散X射线分析(EDX)和光致发光光谱(PL)已经用于详细表征样品。 XRD研究表明,Mn掺杂的ZnO微型和纳米结构具有紫立岩结构(六边形)。由合成的ZnO微型和纳米结构由非常均匀且未观察到二次相。 X射线衍射和EDX结果提供了Mn被掺入ZnO晶体中的证据。对于Mn掺杂的ZnO微型和纳米晶体,已经观察到强大而宽的紫外线发射,如在室温下的光致发光光谱所证明的。 PL光谱显示,作为合成样品是高纯度和结晶的。还通过使用振动样品磁力计研究了这些样品中的磁性。

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