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Contact properties and surface reaction kinetics of single ZnO nanowire devices fabricated by dielectrophoresis

机译:介电电泳技术制备单根ZnO纳米线器件的接触特性和表面反应动力学

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This work describes the development of ZnO nanowire (NW) devices for ultraviolet detection and cost-effective gas sensing. A dielectrophoresis (DEP) flow cell fabricated for the integration of NWs on different substrates is presented. The system includes the possibility to set characteristic parameters such as alternating current (AC) frequency, amplitude or flow speed in order to control NW trapping on specific sites defined by micro-gapped electrodes. The electrical characteristics of the rectifying metal/NW contact fabricated by DEP are investigated in darkness and under direct illumination of the metal-NW interface through the ZnO NW. A significant downshift of the turn-on voltage is observed in the current-voltage characteristics during the illumination with photon energies higher than the ZnO bandgap. The reduction is attributed to a barrier height lowering induced by interface charge emission. The effects of AC bias on the thermal drift of the DC average current in NW devices are also discussed. Finally, the reaction kinetics of ethanol and water vapors on the NW surface are compared through the analysis of the DC current under direct exposure to gas flows. Device responses to more complex compound mixtures such as coffee or mint are also monitored over time, showing different performance in both cases.
机译:这项工作描述了用于紫外线检测和具有成本效益的气体传感的ZnO纳米线(NW)器件的开发。提出了一种介电电泳(DEP)流通池,用于在不同基板上集成NW。该系统包括设置特征参数的可能性,例如交流(AC)频率,幅度或流速,以便控制由微间隙电极限定的特定位置上的NW捕获。在黑暗中和在通过ZnO NW直接照射金属-NW界面的情况下,研究了DEP制备的整流金属/ NW触点的电特性。在光子能量高于ZnO带隙的照明过程中,电流-电压特性中观察到了导通电压的大幅下降。减少归因于由界面电荷发射引起的势垒高度降低。还讨论了交流偏置对NW器件中DC平均电流的热漂移的影响。最后,通过分析直接暴露于气流下的直流电流,比较了西北表面乙醇和水蒸气的反应动力学。随着时间的流逝,设备对更复杂的化合物混合物(如咖啡或薄荷)的响应也会受到监控,在两种情况下均显示出不同的性能。

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