首页> 外文期刊>ACS Omega >Ultrafast Detection of Low Acetone Concentration Displayed by Au-Loaded LaFeO3 Nanobelts owing to Synergetic Effects of Porous 1D Morphology and Catalytic Activity of Au Nanoparticles
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Ultrafast Detection of Low Acetone Concentration Displayed by Au-Loaded LaFeO3 Nanobelts owing to Synergetic Effects of Porous 1D Morphology and Catalytic Activity of Au Nanoparticles

机译:由于多孔1D形态和金纳米颗粒的催化活性的协同作用,金装LaFeO3纳米带显示的丙酮浓度低,超快检测

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Herein, we report on one-dimensional porous Au-modified LaFeO3 nanobelts (NBs) with high surface area, which were synthesized through the electrospinning method. The incorporation and coverage of Au nanoparticles (NPs) on the surface of the LaFeO3 NBs was achieved by adjusting the HAuCl amount in the precursor solution. Successful incorporation of Au NPs was examined by X-ray diffraction, high-resolution transmission electron microscopy, and X-ray photoelectron spectroscopy. The gas-sensing performance of both the pure and Au/LaFeO3 NB-based sensors was tested toward 2.5–40 ppm of acetone at working temperatures in the range from room temperature to 180 °C. The gas-sensing findings revealed that Au/LaFeO3 NB-based sensor with the Au concentration of 0.3 wt % displayed improved response of 125–40 ppm of acetone and rapid response and recovery times of 26 and 20 s, respectively, at an optimal working temperature of 100 °C. Furthermore, all sensors demonstrated an excellent response toward acetone and remarkable selectivity against NO2, NH3, CH4, and CO. Hence, the Au/LaFeO3-NB-based sensor is a promising candidate for sensitive, ultrafast, and selective acetone detections at low concentrations. The gas-sensing mechanism of the Au/LaFeO3 sensors is explained in consideration of the catalytic activity of the Au NPs, which served as direct adsorption sites for oxygen and acetone.
机译:在本文中,我们报道了通过电纺丝法合成的具有高表面积的一维多孔金改性的LaFeO3纳米带(NBs)。通过调整前体溶液中的HAuCl量,可以在LaFeO3 NB表面掺入和覆盖金纳米颗粒(NP)。通过X射线衍射,高分辨率透射电子显微镜和X射线光电子能谱检查了金纳米颗粒的成功掺入。在室温至180°C的工作温度下,对纯的和基于Au / LaFeO3 NB的传感器的气体传感性能进行了测试,使其对2.5–40 ppm的丙酮进行​​测试。气体感测结果显示,Au / LaFeO3 NB基传感器的Au浓度为0.3 wt%,在最佳工作状态下显示出125–40 ppm的丙酮响应改善,响应和恢复时间分别为26和20 s。温度为100°C。此外,所有传感器均表现出对丙酮的出色响应以及对NO2,NH3,CH4和CO的出色选择性。因此,基于Au / LaFeO3-NB的传感器是低浓度灵敏,超快速和选择性丙酮检测的有希望的候选者。考虑到Au NPs的催化活性,解释了Au / LaFeO3传感器的气体传感机理,Au NPs充当了氧气和丙酮的直接吸附位。

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