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Inkjet Seeded CVD-Grown Hydrogenated Diamond Gas Sensor Under UV-LED Illumination

机译:紫外线照明下喷墨播种CVD氢化金刚石气体传感器

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Hydrogen-terminated diamond gas sensors have been prepared by selective deposition of nanodiamond ink using direct inkjet printing on interdigital electrodes, followed by chemical vapor deposition growth of a nanoctrystalline diamond layer. The structure of the deposited layer was characterised and analyzed by scanning electron microscopy and Raman spectroscopy. The effect of ultraviolet light-emitting diode (UV-LED) illumination on the performance of the hydrogen-terminated diamond gas sensor with regard to reducing (NH3) and oxidizing (NO2) gases at various temperatures was studied. UV-LED illumination showed a short response/recovery time to NH3 and NO2 gases, 97 s/153 s, and 72 s/186 s, respectively.
机译:通过在叉指电极上使用直接喷墨印刷选择性沉积纳米金刚石墨水,然后进行纳米 - 金刚石层的化学气相沉积生长来制备氢封端的金刚石气体传感器。通过扫描电子显微镜和拉曼光谱表征和分析沉积层的结构。研究了紫外发光二极管(UV-LED)照明对在各种温度下还原(NH 3)和氧化(NO2)气体的氢封端的金刚石气体传感器的性能的影响。 UV-LED照明分别显示出NH3和NO2气体,97S / 153S和72 S / 186s的短响应/恢复时间。

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