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Direct observation of enhanced cathodoluminescence emissions from ZnO nanocones compared with ZnO nanowire arrays

机译:与ZnO纳米线阵列相比,直接观察到ZnO纳米锥的阴极发光增强了

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We report, for the first time, direct observation of enhanced cathodoluminescence (CL) emissions from ZnO nanocones (NCs) compared with ZnO nanowires (NWs). For direct and unambiguous comparison of CL emissions from NWs and nanocones, periodic arrays of ZnO NW were converted to nanocone arrays by our unique HCl [aq] etching technique, enabling us to compare the CL emissions from original NWs and final nanocones at the same location. CL measurements on NW and nanocone arrays reveal that emission intensity of the nanocone at ~ 387nm is over two times larger than that of NW arrays. The enhancement of CL emission from nanocones has been confirmed by finite-difference time-domain simulation of enhanced light extraction from ZnO nanocones compared to ZnO NWs. The enhanced CL from nanocones is attributed to its sharp morphology, resulting in more chances of photons to be extracted at the interface between ZnO and air.
机译:我们首次报告直接观察到与ZnO纳米线(NWs)相比,ZnO纳米锥(NCs)增强的阴极发光(CL)发射。为了直接明确地比较NW和纳米锥的CL排放,通过我们独特的HCl [aq]蚀刻技术,将ZnO NW的周期性阵列转换为纳米锥阵列,使我们能够比较同一位置的原始NW和最终纳米锥的CL排放。 。在NW和纳米锥阵列上的CL测量表明,在387nm处,纳米锥的发射强度是NW阵列的两倍以上。通过与ZnO NWs相比从ZnO纳米锥中提取的光增强的有限差分时域模拟,已经证实了纳米锥中CL发射的增强。来自纳米锥的增强的CL归因于其锐利的形貌,导致光子在ZnO与空气之间的界面上被提取的机会增加。

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