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Structural and optical properties of Zn_(1-x)Mg_xO nanocrystals obtained by low temperature method

机译:低温法制备Zn_(1-x)Mg_xO纳米晶体的结构和光学性质

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In this paper we report structural and optical properties of magnesium substituted zinc oxide (Zn_(1-x)Mg_xO) nanocrystals (~10-12 nm) synthesized by low temperature route. In the low temperature synthesis route it was possible to reach x=0.17 without segregation of Mg rich phase. The exact chemical composition has been established by quantitative analysis. Rietveld analysis of the x-ray diffraction (XRD) data confirms the wurtzite structure and a continuous compaction of the lattice (in particular, the c-axis parameter) as x increases. There is an enhancement of the strain in the lattice as the Mg is substituted. The band gap also gets enhanced as x is increased and reaches a value of 4 eV for x=0.17. From the transmission electron microscope and the XRD data it has been concluded that when there is a phase segregation for x > 0.17, there is a shell of Mg(OH)_2 on the ZnO. The absorption also shows persistence of the excitonic absorption on Mg substitution. The nanocrystals show near band edge photoluminescence (PL) at room temperature which shows blueshift on Mg incorporation. In addition to the near band edge emission the ZnO and Zn_(1-x)Mg_xO alloy nanocrystals show considerable emission in the blue-green region at wavelength of ~550 nm. We find that the relative intensity of the green emission increases with the Mg concentration for very low x (up to x=0.05) and on further increase of the Mg concentration there is a sharp decrease of relative intensity of the green emission eventually leading to a complete quenching of green emission. It is concluded that due to phase segregation (for x ≥ 0.20), the formation of the shell of Mg(OH)_2 on the ZnO leads to quenching of the green emission. However, this shell formation does not have much effect on the near band edge PL.
机译:在本文中,我们报告了通过低温路线合成的镁取代的氧化锌(Zn_(1-x)Mg_xO)纳米晶体(〜10-12 nm)的结构和光学性质。在低温合成路线中,有可能达到x = 0.17而不会富Mg相分离。确切的化学成分已通过定量分析确定。对X射线衍射(XRD)数据的Rietveld分析证实,随着x的增加,纤锌矿结构和晶格的连续压实(特别是c轴参数)。当Mg被取代时,晶格中的应变增强。带隙也随着x的增加而增强,并且对于x = 0.17达到4 eV的值。从透射电子显微镜和XRD数据可以得出结论,当x> 0.17时存在相偏析时,ZnO上会有Mg(OH)_2的壳。吸收还显示出镁取代后激子吸收的持久性。纳米晶体在室温下显示出近能带边缘的光致发光(PL),这表明掺入镁会发生蓝移。除近带边缘发射外,ZnO和Zn_(1-x)Mg_xO合金纳米晶体在约550 nm波长的蓝绿色区域内显示出可观的发射。我们发现,对于非常低的x(高达x = 0.05),绿色发射的相对强度随Mg浓度的增加而增加,随着Mg浓度的进一步增加,绿色发射的相对强度会急剧下降,最终导致完全淬灭绿色发射。结论是由于相分离(x≥0.20),在ZnO上形成Mg(OH)_2的壳导致绿色发射的猝灭。然而,这种壳形成对近带边缘PL没有太大影响。

著录项

  • 来源
    《Journal of Applied Physics 》 |2006年第3期| p.034315.1-034315.7| 共7页
  • 作者单位

    DST Unit for Nanoscience, S. N. Bose National Centre for Basic Sciences, Block-JD, Sector-III, Salt Lake, Kolkata 700 098, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用物理学 ; 计量学 ;
  • 关键词

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