在环境和高温条件下具有长周期的坚固碳化硅(SiC)纳米机电开关

Tina He, Rui Yang, S. Rajgopal, M. A. Tupta, S. Bhunia, M. Mehregany, P. Feng
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引用次数: 21

摘要

我们报告了具有明显较高比较性能的纳米级机电接触模式开关的实验演示,该开关由多晶硅碳化硅(poly-SiC)纳米机械悬臂梁实现,具有三端,栅极控制,侧向配置。我们记录了在环境空气中测量的开关事件的完整时间演变,通过开关设备≥105-106个周期无故障(即设备仍然存活;需要特殊的加速试验来适当地“排气”设备并接近其固有寿命)。这些基于SiC纳米机电系统(NEMS)的开关具有纳米尺度的所有尺寸,并且具有~104或更高的开/关比,并且在空气中具有数天可重复的性能。我们还演示了SiC NEMS开关在空气中的高温(T≈500°C)下工作。这些SiC器件的典型运动体积仅为~1μm3,并且在空气中具有较长的“热”开关周期,具有实现稳健NEMS开关和逻辑电路的强大潜力。
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Robust silicon carbide (SiC) nanoelectromechanical switches with long cycles in ambient and high temperature conditions
We report experimental demonstration of nanoscale electromechanical contact-mode switches with clearly high comparative performance, enabled by polycrystalline silicon carbide (poly-SiC) nanomechanical cantilevers, in a three-terminal, gate-controlled, lateral configuration. We have recorded the complete time evolution of the measured switching events in ambient air, by switching devices on and off for ≥105-106 cycles without failure (i.e., devices still alive; special accelerated tests are needed to properly `exhaust' the device and approach its intrinsic lifetime). These SiC nanoelectromechanical systems (NEMS) based switches have all dimensions but length in nanometer scale, and demonstrate on/off ratios of ~104 or higher, with repeatable performance over days in air. We have also demonstrated SiC NEMS switches operating at high temperature (T≈500°C) in air. With a typical motional volume of only ~1μm3 and long `hot' switching cycles in air, these SiC devices exhibit strong potential toward realizing robust NEMS switches and logic circuits.
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