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Reliability of Sensors Based on Nanowire Networks With Either an Equilateral Triangle Lattice or a Hexagonal Lattice Structure

机译:具有等边三角形格子或六边形格子结构的基于纳米线网络的传感器的可靠性

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摘要

Nanowires have a great potential in many industrial applications, including electronics and sensors. Palladium nanowire network-based hydrogen sensors have been found to outperform their counterparts that consist of an individual nanowire or palladium thin or thick films. However, reliability issues still need to be addressed. In this paper, we consider hydrogen gas sensors based on a nanowire network with either an equilateral triangle lattice or a hexagonal lattice structure. We then provide the reliability behavior of the nanosensor under each model. Our findings reveal that one can improve the reliability function by considering a network of nanowires rather than a single nanowire. Among many other applications, our results can also be used to assess the reliability of any nanosystem/ nanodevice where one of our proposed structures is a reasonable choice. What distinguishes our work from related work are the unique difficulties that the nanocomponents introduce to the evaluation of reliability and the way that we define reliability over cycles of hydrogen gas.
机译:纳米线在包括电子和传感器在内的许多工业应用中具有巨大的潜力。已发现基于钯纳米线网络的氢传感器的性能优于由单个纳米线或钯薄膜或厚膜组成的氢传感器。但是,可靠性问题仍然需要解决。在本文中,我们考虑基于具有等边三角形晶格或六边形晶格结构的纳米线网络的氢气传感器。然后,我们提供每个模型下纳米传感器的可靠性行为。我们的发现表明,通过考虑纳米线网络而不是单个纳米线,可以提高可靠性功能。在许多其他应用中,我们的结果还可以用于评估我们提出的结构之一是合理选择的任何纳米系统/纳米设备的可靠性。将我们的工作与相关工作区分开来的是纳米组分给可靠性评估带来的独特困难,以及我们定义氢气循环可靠性的方式。

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