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首页> 外文期刊>RSC Advances >The photoluminescence, field emission and femtosecond nonlinear absorption properties of Al-doped ZnO nanowires, nanobelts, and nanoplane-cone morphologies
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The photoluminescence, field emission and femtosecond nonlinear absorption properties of Al-doped ZnO nanowires, nanobelts, and nanoplane-cone morphologies

机译:Al掺杂的ZnO纳米线,纳米带和纳米平面锥形态的光致发光,场发射和飞秒非线性吸收特性

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Al-doped ZnO (AZO) nanowires, nanobelts and nanoplane-cone nanostructures have been successfully synthesized. The structural, photoluminescence (PL) and field emission (FE) properties of AZO nanowires have been characterized. The dependence of the PL properties of AZO nanostructures versus excitation laser power in the range from 1 to 12 mW and temperature in the range of 10–273 K was discussed. The PL measurement results demonstrated that the ultraviolet emission came from a near band edge emission, and two peaks in visible light region were due to deep-level emission. Moreover, the AZO nanowires have a relatively stronger ultraviolet emission than other kinds of samples. The FE measurements indicate that the turn-on field for the nanoplane-cone structure is 2.52 V μm ~(?1) , which is smaller than 4.42 V μm ~(?1) for nanowires and 5.28 V μm ~(?1) for nanobelts. In addition, the nonlinear absorption properties of AZO nanowires were measured using a femtosecond Z-scan technique. The effect of morphology on the nonlinear optical absorption properties of AZO nanowires was studied. From the results, the AZO nanowires show reverse saturable absorption (RSA) behavior. Furthermore, the results show that the order of magnitude of the nonlinear absorption coefficient for AZO nanowires is ~10 ~(?2) cm ~(3) GW ~(?2) . Our results show that AZO films are a promising candidate in further optoelectronic device applications.
机译:铝掺杂的ZnO(AZO)纳米线,纳米带和纳米平面锥纳米结构已经成功合成。已经表征了AZO纳米线的结构,光致发光(PL)和场发射(FE)特性。讨论了AZO纳米结构的PL特性与1至12 mW范围内的激发激光功率以及10-273 K范围内的温度之间的关系。 PL测量结果表明,紫外线的发射来自近带边缘发射,可见光区域的两个峰是由于深能级发射引起的。而且,AZO纳米线比其他种类的样品具有相对较强的紫外线发射。有限元测量表明,纳米平面锥结构的导通场为2.52 Vμm〜(?1),对于纳米线而言小于4.42 Vμm〜(?1),对于纳米线而言为5.28 Vμm〜(?1)。纳米带。此外,使用飞秒Z扫描技术测量了AZO纳米线的非线性吸收特性。研究了形态对AZO纳米线非线性光学吸收特性的影响。从结果来看,AZO纳米线显示出​​反向饱和吸收(RSA)行为。此外,结果表明,AZO纳米线的非线性吸收系数的量级为〜10〜(?2)cm〜(3)GW〜(?2)。我们的结果表明,AZO膜是进一步光电子器件应用中的有前途的候选者。

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