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Shape-dependent localized surface plasmon enhanced UV-emission from ZnO grown by atomic layer deposition

机译:形状相关的局部表面等离子体激元通过原子层沉积生长的ZnO增强了UV发射

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Two-dimensional arrays of Al nanoparticles (NPs) were used to demonstrate the localized surface plasmon resonance (LSPR) enhanced UV light emission from ZnO grown by atomic layer deposition. Well defined NP arrays with different shapes were fabricated on the surface of ZnO by electron-beam lithography. A theoretical analysis based on the finite-difference time-domain method was carried out to show the shape dependence of the LSPR wavelength. Time resolved photoluminescence and temperature-dependent photoluminescence measurements suggested that the Al NPs arrays increase the radiative recombination rate by the resonance coupling between the localized surface plasmons and the excitons of the ZnO. By top excitation of the Al NP arrays coupled with ZnO, a 2.6-fold enhancement in peak photoluminescence intensity was measured. The enhancement strongly depended on the NP's shape, revealing an important way of geometrical tuning the UV-emission.
机译:Al纳米颗粒(NPs)的二维阵列用于证明局部表面等离子体共振(LSPR)增强了通过原子层沉积生长的ZnO发出的UV光。通过电子束光刻技术,在ZnO表面制备了形状各异的清晰定义的NP阵列。进行了基于时域有限差分法的理论分析,以显示LSPR波长的形状依赖性。时间分辨的光致发光和与温度有关的光致发光测量结果表明,Al NPs阵列通过局部表面等离激元与ZnO的激子之间的共振耦合提高了辐射复合率。通过与ZnO耦合的Al NP阵列的顶部激发,测得峰值光致发光强度提高了2.6倍。增强很大程度上取决于NP的形状,揭示了几何调整UV发射的重要方法。

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