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Gas sensing behaviour of mat-like networked tungsten oxide nanowire thin films

机译:垫状网状氧化钨纳米线薄膜的气敏行为

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摘要

Here, we present the results of the resistive response of tungsten trioxide nanowire (mat-like, nanowire networks) and nanoparticle thin films subjected to N_2O gas in the temperature range of 373-773 K. The nanowire mats exhibited an order of magnitude higher response in the resistivity change compared to that of nanoparticle films at temperatures above 523 K. Nanowire mats also exhibited relatively faster adsorption and desorption times. Impedance spectroscopy studies showed that the gas sensing mechanism for nanowire mats involves changes in both the nanowire and grain boundary resistances, whereas for nanoparticle films only the grain boundary resistance governs the sensor properties upon exposure to gases.
机译:在这里,我们介绍了三氧化钨纳米线(类似垫子的纳米线网络)和在373-773 K的温度范围内经受N_2O气体作用的纳米颗粒薄膜的电阻响应的结果。纳米线垫表现出更高数量级的响应与在高于523 K的温度下的纳米颗粒薄膜相比,其电阻率变化更大。纳米线垫也表现出相对更快的吸附和解吸时间。阻抗谱研究表明,纳米线垫的气体传感机制涉及纳米线和晶界电阻的变化,而对于纳米颗粒薄膜,只有晶界电阻才决定了传感器在接触气体时的性能。

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