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ZnO, GaN, and InN Functionalized Nanowires for Sensing and Photonics Applications

机译:ZnO,GaN和InN功能化的纳米线,用于传感和光子学应用

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A review is given of recent work in use of functionalized ZnO, GaN, and InN nanowires (NWs) as hydrogen gas and biological sensors, and the use of ZnO NWs with polymers in hybrid LEDs. For the biological sensors, specific examples of the detection of lactic acid and glucose by ZnO NWs are detailed. We also discuss self-consistent solutions of a coupled quantum-drift diffusion equation with a 3-D Poisson equation for simulations of the effects of sensing molecules on the surface of the ZnO NWs on the resulting conductance of the wires. The change in conductance is found to be a strong function of the channel length and diameter of the NWs and the simulations can be used as a method to optimize the sensor performance.
机译:本文综述了功能化ZnO,GaN和InN纳米线(NW)作为氢气和生物传感器的最新工作,以及将ZnO NW与聚合物用于混合LED的工作。对于生物传感器,将详细介绍通过ZnO NW检测乳酸和葡萄糖的具体示例。我们还讨论了带有3-D泊松方程的耦合量子漂移扩散方程的自洽解,用于模拟ZnO NWs表面感应分子对导线电导率的影响。发现电导率的变化与NW的沟道长度和直径密切相关,并且可以将模拟用作优化传感器性能的方法。

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