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铜掺杂对氧化锌纳米结构局部电子和磁性的影响。

Influence of Cu doping on the local electronic and magnetic properties of ZnO nanostructures.

作者信息

Bhardwaj Richa, Bharti Amardeep, Singh Jitendra P, Chae Keun H, Goyal Navdeep

机构信息

Department of Physics, Panjab University Chandigarh 160-014 India

Material Science Division, Inter-University Accelerator Center New Delhi 110-067 India

出版信息

Nanoscale Adv. 2020 Aug 28;2(10):4450-4463. doi: 10.1039/d0na00499e. eCollection 2020 Oct 13.

Abstract

In this paper, we report the existence of defect induced intrinsic room-temperature ferromagnetism (RTFM) in Cu doped ZnO synthesized a facile sol-gel route. The wurtzite crystal structure of ZnO remained intact up to certain Cu doping concentrations under the present synthesis environment as confirmed by the Rietveld refined X-ray diffraction pattern with the average crystallite size between 35 and 50 nm. Field emission scanning electron microscopy reveals the formation of bullet-like morphologies for pure and Cu doped ZnO. Diffuse reflectance UV-vis shows a decrease in the energy band gap of ZnO on Cu doping. Further, these ZnO samples exhibit strong visible photoluminescence in the region of 500-700 nm associated with defects/vacancies. Near-edge X-ray absorption fine-structure measurements at Zn, Cu L- and O K-edges ruled out the existence of metallic Cu clusters in the synthesized samples (up to 2% doping concentration) supporting the XRD results and providing the evidence of oxygen vacancy mediated ferromagnetism in Cu : ZnO systems. The observed RTFM in Cu doped ZnO nanostructures can be explained by polaronic percolation of bound magnetic polarons formed by oxygen vacancies. Further, extended X-ray absorption fine-structure data at Zn and Cu K-edges provide the local electronic structure information around the absorbing (Zn) atom. The above findings for ZnO nanostructures unwind the cause of magnetism and constitute a significant lift towards realizing spin-related devices and optoelectronic applications.

摘要

在本文中,我们报道了通过简便的溶胶-凝胶法合成的Cu掺杂ZnO中存在缺陷诱导的本征室温铁磁性(RTFM)。如通过Rietveld精修X射线衍射图谱所证实,在当前合成环境下,直至一定的Cu掺杂浓度,ZnO的纤锌矿晶体结构仍保持完整,平均微晶尺寸在35至50nm之间。场发射扫描电子显微镜揭示了纯ZnO和Cu掺杂ZnO呈现子弹状形态。漫反射紫外可见光谱显示Cu掺杂后ZnO的能带隙减小。此外,这些ZnO样品在500 - 700nm区域表现出与缺陷/空位相关的强烈可见光光致发光。在Zn、Cu的L边和O的K边进行的近边X射线吸收精细结构测量排除了合成样品(掺杂浓度高达2%)中金属Cu团簇的存在,这支持了XRD结果,并为Cu:ZnO体系中氧空位介导的铁磁性提供了证据。在Cu掺杂的ZnO纳米结构中观察到的RTFM可以用氧空位形成的束缚磁极化子的极化子渗流来解释。此外,在Zn和Cu的K边的扩展X射线吸收精细结构数据提供了吸收(Zn)原子周围的局部电子结构信息。上述关于ZnO纳米结构的发现揭示了磁性的成因,并朝着实现自旋相关器件和光电子应用迈出了重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4e5/9417303/97fe93cf3aba/d0na00499e-f1.jpg

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