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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Tandem gasochromic-Pd-WO3/graphene/Si device for room-emperature high-performance optoelectronic hydrogen sensors
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Tandem gasochromic-Pd-WO3/graphene/Si device for room-emperature high-performance optoelectronic hydrogen sensors

机译:串联加芯铬-PD-WO3 /石墨烯/ SI装置,适用于高性能高性能光电子传感器

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With the increasing requirement of the hydrogen energy storage and chemical reactant, it gets to be emergent to exploit room-temperature high-performance hydrogen sensors. By designing a gasochromic- Pd-WO3/graphene/Si tandem structure, here we report an optoelectronic hydrogen sensor, which is working at the room temperature. In this device architecture, the graphene/Si acts as a photodetector layer by using its photovoltaic property and the tandem Pd-WO3 film serves as a hydrogen gas sensing layer by using its gasochromic behavior. While the device is exposed to the hydrogen gas, the transmittance of the Pd-WO3 can be tuned, which is synchronously sensed by the graphene/Si photodetector. With this principle, the device can detect the hydrogen gas with the concentration down to 0.05 vol% and the response time less than 13 s and the recovery time less than 43 s. This indicates that it is promising to develop the tandem gasochromic-Pd-WO3/graphene/Si structure for room-temperature high-performance low-cost hydrogen sensors. (c) 2018 Elsevier Ltd. All rights reserved.
机译:随着氢能储存和化学反应物的越来越多的需求,它旨在开采室温高性能氢传感器。通过设计Gasochromic-PD-WO3 /石墨烯/ Si串联结构,我们在这里报道了一个光电氢传感器,该传感器在室温下工作。在该装置架构中,石墨烯/ Si通过使用其光伏性能作为光电探测器层,并且通过使用其加入圆粒度行为用作氢气感测层。虽然装置暴露于氢气,但可以调谐PD-WO3的透射率,其由石墨烯/ Si光电探测器同步感测。通过该原理,该装置可以检测浓度低至0.05体积%的氢气,响应时间小于13 s,恢复时间小于43 s。这表明它有希望开发用于室温高性能低成本氢传感器的串联加芯铬-PD-WO3 /石墨烯/ Si结构。 (c)2018年elestvier有限公司保留所有权利。

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