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UV radiation and CH4 gas detection with a single ZnO:Pd nanowire

机译:紫外线辐射和CH4气体检测用单个ZnO:Pd纳米线

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There is an increasing demand for sensors to monitor environmental levels of ultraviolet (UV) radiation and pollutant gases. In this work, an individual nanowire of Pd modified ZnO nanowire (ZnO:Pd NW) was integrated in a nanosensor device for efficient and fast detection of UV light and CH4 gas at room temperature. Crystalline ZnO:Pd nanowire/nanorod arrays were synthesized onto fluorine doped tin oxide (FTO) substrates by electrochemical deposition (ECD) at relative low-temperatures (90 °C) with different concentrations of PdCl_2 in electrolyte solution and investigated by SEM and EDX. Nanodevices were fabricated using dual beam focused electron/ion beam (FIB/SEM) system and showed improved UV radiation response compared to pristine ZnO NW, reported previously by our group. The UV response was increased by one order in magnitude (≈11) for ZnO:Pd NW. Gas sensing measurements demonstrated a higher gas response and rapidity to methane (CH_4 gas, 100 ppm) at room temperature, showing promising results for multifunctional applications. Also, due to miniature size and ultra-low power consumption of these sensors, it is possible to integrate them into portable devices easily, such as smartphones, digital clock, flame detection, missile lunching and other smart devices.
机译:对传感器的需求越来越大,以监测紫外线(UV)辐射和污染物气体的环境水平。在这项工作中,将Pd改性ZnO纳米线(ZnO:Pd NW)的单个纳米线集成在纳米传感器装置中,用于在室温下有效和快速地检测UV光和CH4气体。结晶ZnO:Pd纳米线/纳米棒阵列通过电化学沉积(ECD)在电解质溶液中的不同浓度PdCl_2的相对低温(ECD)上合成氟掺杂锡氧化物(FTO)衬里。通过SEM和EDX研究。使用双光束聚焦电子/离子束(FIB / SEM)系统制造纳米型,并且与本组报道的原始ZnO NW相比,与原始的ZnO NW相比,提高了UV辐射响应。 UV响应在ZnO:Pd NW的幅度(≈11)上增加了一个订单。气体传感测量在室温下表现出更高的气体响应和对甲烷(CH_4天然气,100ppm)的快速度,显示了多功能应用的有希望的结果。此外,由于这些传感器的微型尺寸和超低功耗,因此可以轻松地将它们集成到便携式设备中,例如智能手机,数字时钟,火焰检测,导弹午餐和其他智能设备。

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