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Ultra Low Power Mass-Producible Gas Sensor Based on Efficient Self-Heated GaN Nanorods

机译:基于高效自加热GaN纳米码的超低功率批量生产气体传感器

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摘要

This paper reports the fabrication and characterization of GaN nanorods (NRs) with a bottom contact and freestanding top contact. A top-down approach was adopted to produce an ordered array of high surface-to-volume NRs elements of GaN for gas sensing applications [1]. The GaN NRs were then used both as sensitive beams for conductometric gas sensing and as nanosized heating elements to activate their own response to gases (self-heating). GaN NRs with a diameter of 300 nm in arbitrarily large and regular arrays of 1 × 1, 3 × 3, 9 × 10 were fabricated. With power levels in the range of microwatts, these structures reach highly enough temperatures to develop a gas sensing response towards ethanol. In summary, this is one of the first systems showing efficient self-heating that can be produced using conventional microelectronic processing at a wafer scale.
机译:本文报道了GaN纳米棒(NRS)的制造和表征,具有底部接触和独立的顶部接触。采用自上而下的方法来生产用于气体传感应用的GaN的有序的高面对体积NRS元素[1]。然后将GaN NRS用作电导气体感测的敏感光束,并且作为纳米化加热元件,以激活它们对气体的响应(自加热)。 GaN NRS直径为300nm,由3×1,3×3,9×10的任意大而常规阵列的任意大而常规阵列。通过微瓦范围内的功率水平,这些结构达到足够高的温度,以对乙醇产生气体感测响应。总之,这是第一系统之一,其显示有效自加热,可以在晶片刻度上使用传统的微电子处理来生产。

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