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Highly porous metal oxide polycrystalline nanowire films with superior performance in gas sensors

机译:高度多孔的金属氧化物多晶纳米线膜,在气体传感器中具有出色的性能

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摘要

In this work, we report for the first time a simple two-step route to fabricate a novel porous metal oxide film composed of polycrystalline nanowires with ultra-small nanoparticles, good interconnectivity between nanoparticles, and a high density of ultra-fine nanopores. The as-prepared metal oxide films combine the advantages of small crystal size, high surface-to-volume ratio, and one-dimensional-nanowire-induced unique charge transport paths (with correspondingly high interconnectivity). Taking In2O3 as an example, porous In2O3 films, composed of polycrystalline In2O3 nanowires with ultra-small nanocrystals (less than 10 nm) and a high density of ultra-fine nanopores (1.6-3.1 nm), have shown very high sensitivity and good reproducibility towards ethanol gas, which are 10-20 times higher than for In2O3 octahedra and commercial SnO2 thick films. The response/recovery speeds of the as-prepared porous In2O3 films are also 5-6 times higher than for In2O3 octahedra, SnO2 nanobelts, and commercial SnO2 thick films. We believe that such metal oxide flexible films made from highly porous nanowires will replace their traditional thick film counterparts, not only in gas sensors but also in other functional devices, such as batteries, supercapacitors, solar cells, etc.
机译:在这项工作中,我们首次报告了一种简单的两步法来制造新颖的多孔金属氧化物膜,该膜由具有超小纳米粒子,纳米粒子之间良好的互连性和高密度的超细纳米孔的多晶纳米线组成。所制备的金属氧化物膜具有晶体尺寸小,表面积与体积比高以及一维纳米线诱导的独特电荷传输路径(相应地具有高互连性)的优点。以In2O3为例,由具有超小纳米晶体(小于10 nm)和高密度超细纳米孔(1.6-3.1 nm)的多晶In2O3纳米线组成的多孔In2O3膜显示了很高的灵敏度和良好的重现性。乙醇气体,比In2O3八面体和商用SnO2厚膜高10-20倍。制备的多孔In2O3薄膜的响应/恢复速度也比In2O3八面体,SnO2纳米带和商用SnO2厚膜高5-6倍。我们相信,这种由高度多孔的纳米线制成的金属氧化物柔性膜将取代传统的厚膜对应膜,不仅在气体传感器中,而且还将在电池,超级电容器,太阳能电池等其他功能性器件中使用。

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