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首页> 外文期刊>Nanotechnology >Enhanced optical properties and (Zn, Mg) interdiffusion in vapour transport grown ZnO/MgO core/shell nanowires
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Enhanced optical properties and (Zn, Mg) interdiffusion in vapour transport grown ZnO/MgO core/shell nanowires

机译:气相传输生长的ZnO / MgO核/壳纳米线中增强的光学特性和(Zn,Mg)互扩散

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摘要

ZnO/MgO (core/shell) nanowires (NWs) grown by a two-step vapour transport method under different MgO shell growth conditions are examined by x-ray diffraction, photoluminescence (PL) excitation and temperature (10-300 K) dependent PL. The excitonic-to-defect PL ratio is increased by more than two orders of magnitude in the core/shell as compared to bare ZnO NWs. Concomitantly, a strong depression of the PL thermal quenching, most particularly for the visible part of the PL spectrum, occurs. Using a semi-quantitative model, results are interpreted as a strong radiative to non-radiative lifetime ratio reduction due to defect passivation at the ZnO NW walls and photocarrier confinement within the ZnO core by the MgO shell. These beneficial effects are, however, significantly weakened when metal interdiffusion across the core/shell interface is favoured during the shell growth. Non-radiative recombination lifetime in the sample with sharp core/shell interface is described by a single activation energy of 15 meV (bound exciton release). For interdiffused cases and bare ZnO an additional activation energy of 60 meV (free exciton breakup) is observed.
机译:通过X射线衍射,光致发光(PL)激发和温度(10-300 K)依赖性PL检查了通过两步气相传输方法在不同MgO壳生长条件下生长的ZnO / MgO(核/壳)纳米线(NWs) 。与裸露的ZnO NW相比,核/壳中的激子与缺陷的PL比增加了两个数量级以上。随之而来的是,PL热淬灭的强烈降低,特别是对于PL光谱的可见部分,发生了强烈的降低。使用半定量模型,结果被解释为由于ZnO NW壁处的缺陷钝化以及MgO壳将光载流子限制在ZnO核内而导致的强烈的辐射寿命与非辐射寿命之比降低。但是,当在壳生长过程中有利于金属穿过核/壳界面的相互扩散时,这些有益作用会大大减弱。具有尖锐的核/壳界面的样品中的非辐射复合寿命由15 meV(受激子释放)的单活化能描述。对于相互扩散的情况和裸露的ZnO,观察到额外的激活能量为60 meV(自由激子破裂)。

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