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首页> 外文期刊>RSC Advances >Fabrication of LaFeO3 and rGO-LaFeO3 microspheres based gas sensors for detection of NO2 and CO
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Fabrication of LaFeO3 and rGO-LaFeO3 microspheres based gas sensors for detection of NO2 and CO

机译:基于LaFeO3和rGO-LaFeO3微球的气体传感器的制造,用于检测NO2和CO

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In the present report, gas sensing devices based on LaFeO _(3) and rGO-LaFeO _(3) were fabricated by a photolithography technique. The X-ray diffraction, Raman spectra and FT-IR results confirm the formation of a perovskite phase and composite. XPS and TEM give the chemical compositions for both products. The higher roughness, greater surface area (62.1 m ~(2) g ~(?1) ), larger pore size (16.4 nm) and lower band gap (1.94 eV) of rGO-LaFeO _(3) make it a suitable candidate to obtain high sensitivity. The gas sensing performance of the devices was investigated for various concentrations of NO _(2) and CO gases at temperatures of 200 and 250 °C. It was observed that the rGO-LaFeO _(3) based device exhibited a high relative response (183.4%) for a 3 ppm concentration of NO _(2) at a 250 °C operating temperature. This higher response is attributed to the large surface area, greater surface roughness, and numerous active sites of rGO-LaFeO _(3) . The gas sensing properties investigated show that rGO-LaFeO _(3) is an excellent candidate for an NO _(2) sensor.
机译:在本报告中,通过光刻技术制造了基于LaFeO_(3)和rGO-LaFeO_(3)的气体传感装置。 X射线衍射,拉曼光谱和FT-IR结果证实钙钛矿相和复合物的形成。 XPS和TEM给出了两种产品的化学成分。 rGO-LaFeO _(3)的较高的粗糙度,较大的表面积(62.1 m〜(2)g〜(?1)),较大的孔径(16.4 nm)和较低的带隙(1.94 eV)使它成为合适的候选人获得高灵敏度。在200和250°C的温度下,针对各种浓度的NO_(2)和CO气体,研究了设备的气体传感性能。观察到,基于rGO-LaFeO_(3)的设备在250°C的工作温度下,对于浓度为3 ppm的NO_(2)表现出较高的相对响应(183.4%)。这种较高的响应归因于rGO-LaFeO_(3)的大表面积,更大的表面粗糙度和许多活性位点。研究的气体传感特性表明,rGO-LaFeO _(3)是NO _(2)传感器的极佳候选者。

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