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Sensitivity investigation for the dependence of monolayer and stacking graphene NH3 gas sensor

机译:单层和堆叠石墨烯NH3气体传感器依赖性的敏感性研究

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The influence of various stacking chemical vapor deposition (CVD) graphene on ammonia sensing is investigated. Three interdigitated electrodes (IDEs) gas sensor with non-stacking monolayer (NSM), less stacking double layer (LSDL) and more stacking few layer (MSFL) CVD graphene were fabricated for ammonia gas detection. NSM sensor is more sensitive than LSDL and MSFL ones towards NH3. Especially for 12,500 ppm NH3, the sensitivity of NSM device is more than twice the LSDL device and almost 7 times of MSFL device. Moreover, the repeatability and response time of NSM device are all much better than the other two. The simulation results show that the change ratios of integral electrons in total DOS changed 26.65% after NH3 adsorption for monolayer graphene, which is three times more than triple layer graphene of 8.29%. This is the reason why NSM has the highest sensitivity towards NH3. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了各种堆叠化学气相沉积(CVD)石墨烯对氨感测的影响。 具有非堆叠单层(NSM)的三个互指电极(IDES)气体传感器,较少堆叠双层(LSDL)和更多堆叠少数层(MSFL)CVD石墨烯被制造用于氨气检测。 NSM传感器比LSDL和MSFL朝向NH3更敏感。 特别是对于12,500ppm NH3,NSM器件的灵敏度大于LSDL设备的两倍,近7次MSFL设备。 此外,NSM设备的重复性和响应时间远优于其他两个。 仿真结果表明,单层石墨烯NH3吸附后,总DOS中整体电子的变化比例为26.65%,这是三层石墨烯的3倍以8.29%。 这就是为什么NSM对NH3具有最高敏感性的原因。 (c)2016年Elsevier B.v.保留所有权利。

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