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Enhanced room temperature ferromagnetism and green photoluminescence in Cu doped ZnO thin film synthesised by neutral beam sputtering

机译:中性束溅射合成Cu掺杂ZnO薄膜增强室温铁磁性和绿色光致发光

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The Cu (3 to 15 at%) is incorporated into ZnO thin film by atomic beam co-sputtering has been investigated for enhancement in room temperature ferromagnetism and green photo-luminance. These Cu-ZnO thin films examined with Raman spectroscopy, X-Ray Diffraction (XRD), UV-Visible spectroscopy, Hall measurement, magnetic force microscopy (MFM) and magnetic hysteresis. Raman spectroscopy, XRD confirms wurtzite structure and improvement in the crystallinity of ZnO upto 7% Cu. Further increase in Cu concentration results in growth in Cu nanoparticles. On increasing Cu concentration, there is decrement in transparency and increase in band gap with increase in n-type carrier concentration as confirmed from UV-Visible and Hall measurement studies. Magnetic measurement exhibited unique feature of room temperature ferromagnetic ordering in undoped and doped sample upto 3% Cu. The enhancement in magnetic moment as well as green emission in photoluminescence response with increase in Cu doping indicates that generation of large defects in ZnO by Cu doping, which can be attributed to combined effect of the presence of oxygen vacancies and/or structural inhomogeneity as well as formation of bound magnetic polarons. Importantly, synthesised Cu doped ZnO thin films can be used as spin LEDs and switchable spin-laser diodes.
机译:已经研究了通过原子束共溅射将Cu(3至15 at%)掺入ZnO薄膜中,以增强室温铁磁性和绿色光亮度。这些Cu-ZnO薄膜通过拉曼光谱,X射线衍射(XRD),紫外可见光谱,霍尔测量,磁力显微镜(MFM)和磁滞现象进行了检查。拉曼光谱法(XRD)证实纤锌矿结构和ZnO(最高7%Cu)的结晶度得到改善。 Cu浓度的进一步增加导致Cu纳米颗粒的生长。随着Cu浓度的增加,紫外可见和霍尔测量研究证实,随着n型载流子浓度的增加,透明性会降低,带隙也会增加。磁性测量在未掺杂和掺杂至多3%Cu的样品中表现出室温铁磁有序性的独特特征。随着铜掺杂的增加,磁矩的增强以及光致发光响应中的绿色发射表明,铜掺杂会在ZnO中产生大量缺陷,这可归因于氧空位和/或结构不均匀性的综合作用。作为束缚的磁极化子的形成。重要的是,合成的掺Cu的ZnO薄膜可用作自旋LED和可开关的自旋激光二极管。

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