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High-performance hydrogen sensor based on an array of single suspended carbon nanowires selectively functionalized with palladium nanoparticles

机译:基于单悬浮碳纳米线阵列的高性能氢传感器,该碳纳米线被钯纳米粒子选择性地功能化

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摘要

This paper reports a novel hydrogen sensor based on an array of single suspended carbon nanowires (Φ ~ 200 nm, length ~ 100 μm) decorated with various sizes (10 ~ 50 nm) of Pd nanoparticles; this H2 sensor exhibits advantageous sensor performances such as room temperature sensing with high sensitivity, wide sensing range, and full recovery in 5 s via low power consumption (30 μW). These high performances are enabled by the novel architecture of suspended Pd nanoparticles/carbon nanowires facilitating enhanced mass transfer, high surface area to volume ratio, and good thermal insulation. This novel sensor platform can be fabricated using only simple batch microfabrication processes including carbon-MEMS that consisted UV-lithography and pyrolysis. The sensitivity and sensing range of the H2 sensor can be modulated by controlling the size of Pd nanoparticles (10-30 nm Pd nanoparticles: 2.51%/ppm1/2 and 10-7,000 ppm, 30-50 nm Pd nanoparticles: 0.36 %/ppm1/2 and 10 ppm-5 %). Hence, wide range of H2 sensing was enabled by integrating nanowires decorated with various Pd nanoparticles on a chip. Moreover, the gas response can be fully recovered in a very short time (e.g. 5 s for 1,000 ppm H2) by self-heating at a carbon nanowire.
机译:本文报道了一种新颖的氢传感器,该传感器基于排列有各种尺寸(10〜50 nm)的Pd纳米粒子的单根悬浮碳纳米线(Φ〜200 nm,长度〜100μm)阵列;这种H2传感器具有优越的传感器性能,例如具有高灵敏度的室温感测,宽广的感测范围以及通过低功耗(30μW)在5 s内完全恢复的优点。这些高性能是由悬浮的Pd纳米颗粒/碳纳米线的新型结构实现的,该结构有助于增强质量传递,高表面积体积比和良好的隔热性。可以仅使用简单的批量微制造工艺(包括由UV光刻和热解组成的碳MEMS)来制造这种新颖的传感器平台。可以通过控制Pd纳米粒子的尺寸来调节H2传感器的灵敏度和感应范围(10-30 nm Pd纳米粒子:2.51%/ ppm1 / 2和10-7,000 ppm,30-50 nm Pd纳米粒子:0.36%/ ppm1 / 2和10 ppm-5%)。因此,通过在芯片上集成装饰有各种Pd纳米粒子的纳米线,可以实现广泛的H2感测。此外,通过在碳纳米线上自加热,可以在非常短的时间内(例如,对于1,000ppm H 2为5秒)完全恢复气体响应。

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