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Study of Influence of Annealing Time on Some Physical Properties of ZnO:Cu Nanorods Grown by a Simple Chemical Bath Deposition Method

机译:简易化学浴沉积方法研究退火时间对生长的ZnO:Cu纳米棒某些物理性能的影响

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A simple chemical bath deposition method was used to prepare high density ZnO nanorods on ZnO seeded Si substrates. Upon the nanorods growth, Cu-doping was achieved by diffusion process at 500℃ for different times in vacuum ambient. The structural, optical, and magnetic properties of the obtained ZnO:Cu nanorods were then examined. XRD analysis showed that undoped and ZnO:Cu samples were highly c-axis oriented with a hexagonal wurtzite structure. SEM analysis indicated that ZnO:Cu nanorods had diameters of ~200 nm and lengths of ~1.5 μm. X-ray photoemission spectroscopy demonstrated that Cu was successfully doped into ZnO in a divalent state. Photoluminescence results showed that Cu-doping caused a decrease in the green band intensity of nanorods compared to undoped ZnO. Room temperature magnetic measurements showed that pure ZnO nanorods exhibited ferromagnetism that might be ascribed to defect-induced d~0 ferromagnetism. All the ZnO:Cu nanorods also showed the room temperature ferromagnetism that was attributed to the bound magnetic polarons (BMPs).
机译:一种简单的化学浴沉积方法用于在ZnO晶种的Si衬底上制备高密度ZnO纳米棒。随着纳米棒的生长,通过在真空环境中在500℃下不同时间的扩散过程实现了Cu掺杂。然后检查了获得的ZnO:Cu纳米棒的结构,光学和磁性。 XRD分析表明,未掺杂和ZnO:Cu样品高度c轴取向,具有六方纤锌矿结构。 SEM分析表明,ZnO:Cu纳米棒的直径为〜200 nm,长度为〜1.5μm。 X射线光发射光谱表明,Cu以二价状态成功地掺杂到ZnO中。光致发光结果表明,与未掺杂的ZnO相比,Cu掺杂导致纳米棒的绿带强度降低。室温磁测量表明,纯ZnO纳米棒表现出铁磁性,这可能归因于缺陷诱导的d〜0铁磁性。所有的ZnO:Cu纳米棒还显示出室温铁磁性,这归因于结合的磁极化子(BMP)。

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