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Highly aligned suspended nanowire array for self-heating type gas sensors

机译:用于自热型气体传感器的高度对准的悬浮纳米线阵列

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A unique array structure of highly aligned and suspended palladium nanowires was demonstrated for application in self-heating type hydrogen gas sensors. Unlike conventional devices which employ randomly distributed bottom-up grown nanowires, in this study a top-down method which enables controllable and uniform device fabrication was used to produce the highly aligned nanowire array. Moreover, by suspending the array, heat loss through the substrate was eliminated, leading to a more efficient self-heating and rapid gas sensing response. As a result, with only a few milliwatts of power, the self-heated gas sensing device exhibited a considerably faster response time upon exposure to hydrogen gas than the device operating at room temperature.
机译:演示了高度对准和悬浮的钯纳米线的独特阵列结构,可用于自热式氢气传感器。与采用随机分布的自下而上生长的纳米线的常规设备不同,在本研究中,采用能够实现可控且均匀的设备制造的自上而下的方法来生产高度对齐的纳米线阵列。此外,通过悬挂阵列,消除了通过基板的热损失,从而实现了更有效的自热和快速的气体感应响应。结果,与在室温下运行的设备相比,仅加热几毫瓦的功率,自加热的气体传感设备在暴露于氢气时表现出明显更快的响应时间。

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