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A template-free electrochemical deposition route to ZnO nanoneedle arrays and their optical and field emission properties

机译:ZnO纳米针阵列的无模板电化学沉积路径及其光学和场发射特性

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摘要

We report a soft and template-free electrochemical deposition method for preparing wafer-scale ZnO nanoneedle arrays on an oriented gold film coated silicon substrate. It has been shown that the ZnO nanoneedles possess single-crystal wurtzite structure and grow along the c-axis perpendicularly on the substrate. Raman and resonant Raman scattering studies have confirmed that the ZnO nanoneedles are of good crystal quality The room temperature photoluminescence spectrum of such ZnO nanoneedle arrays exhibits a strong ultraviolet emission but negligible visible emission. The time-resolved photoluminescence spectral analysis discloses the excitonic origin of the ultraviolet emission. The field electron emission study, showing notable emission current in a moderate turn-on field, demonstrates potential applications of such ZnO nanoneedle arrays in field emission display devices. The formation of such a ZnO nanoneedle array is attributed to the formation of {0001}-oriented ZnO nuclei on the oriented gold coated silicon substrate and preferential growth along (0001).
机译:我们报告了一种软和无模板的电化学沉积方法,用于在定向金膜涂覆的硅基板上制备晶圆级ZnO纳米针阵列。已经表明,ZnO纳米针具有单晶纤锌矿结构并且在基板上沿c轴垂直生长。拉曼和共振拉曼散射研究已证实ZnO纳米针具有良好的晶体质量。此类ZnO纳米针阵列的室温光致发光光谱显示出强紫外线发射,但可见光可以忽略不计。时间分辨的光致发光光谱分析揭示了紫外线发射的激子起源。场电子发射研究显示了在中等开启场中的显着发射电流,证明了此类ZnO纳米针阵列在场发射显示设备中的潜在应用。这种ZnO纳米针阵列的形成归因于在取向的金涂覆的硅基底上{0001}取向的ZnO核的形成以及沿着(0001)的优先生长。

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