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Radiative mechanism and surface modification of four visible deep level defect states in ZnO nanorods

机译:辐射机制和表面改性四个州氧化锌可见的深层次缺陷纳米棒

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Visible luminescence from ZnO nanorods (NRs) is attracting large scientific interest for light emission and sensing applications. We study visible luminescent defects in ZnO NRs as a function of post growth thermal treatments, and find four distinct visible deep level defect states (VDLSs): blue (2.52 eV), green (2.23 eV), orange (2.03 eV), and red (1.92 eV). Photoluminescence (PL) studies reveal a distinct modification in the UV (3.25 eV) emission intensity and a shift in the visible spectra after annealing. Annealing at 600 degrees C in Ar (Ar600) and O-2 (O600) causes a blue and red-shift in the visible emission band, respectively. All samples demonstrate orange emission from the core of the NR, with an additional surface related green, blue, and red emission in the As-Prep, Ar600, and O600 samples, respectively. From PL excitation (PLE) measurements we determine the onset energy for population of the various VDLSs, and relate it to the presence of an Urbach tail below the conduction band due to a presence of ionized Zn-i or Zn-i complexes. We measured an onset energy of 3.25 eV for the as prepared sample. The onset energy red-shifts in the annealed samples by about 0.05 to 0.1 eV indicating a change in the defect structure, which we relate to the shift in the visible emission. We then used X-ray photoemission spectroscopy (XPS), and elastic recoil detection analysis (ERDA) to understand changes in the surface structure, and H content, respectively. The results of the XPS and ERDA analysis explain how the chemical states are modified due to annealing. We summarize our results by correlating our VDLSs with specific intrinsic defect states to build a model for PL emission in ZnO NRs. These results are important for understanding how to control defect related visible emission for sensing and electroluminescence applications.
机译:可见发光从氧化锌纳米棒(NRs)吸引大量的科学兴趣的光排放和传感应用。在氧化锌NRs可见发光缺陷函数的增长热治疗,找到四个明显可见的深层次缺陷橙色(2.03 eV),红(1.92 eV)。光致发光(PL)研究揭示截然不同修改在紫外线(3.25 eV)排放可见光谱强度和转变在退火之后。(Ar600)和0 2 (O600)会导致蓝可见发射光谱带红移,分别。排放的核心NR,额外的表面相关的绿色、蓝色和红色排放在As-Prep Ar600, O600样本,分别。我们测量确定能量人口的各种VDLSs,联系存在一个Urbach尾巴下面传导带由于电离Zn-i的存在或Zn-i复合物。3.25 eV准备样品。能源红移的退火样品大约0.05到0.1 eV指示的变化缺陷结构,我们涉及的转变可见的排放。光电发射光谱(XPS),和弹性反冲检测分析(而达)来理解表面结构的变化,和H的内容,分别。分析解释化学状态修改由于退火。通过关联VDLSs与特定的结果内在缺陷为PL州建立模型在氧化锌NRs发射。了解如何控制缺陷有关可见对传感和排放致发光的应用程序。

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