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Mono-, multi-layer nanostructured porous films and gas sensors

机译:单层,多层纳米结构多孔膜和气体传感器

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A simple and flexible strategy is presented for synthesis of mono or multi-layer nanostructured ordered porous films on any desired substrates with flat or even curved surface, based on the fact that polystyrene sphere colloidal monolayer on glass substrate can lift off and floated on some precursor solutions, which can, in turn, be transferred onto any substrates by picking it up. SnO/sub 2/ ordered nanostructured porous films are thus successfully synthesized on the cylindrical surface, the concave surface and the spherical surface, respectively, just by taking the easily acquired SnCl/sub 4/ solution as precursor. More importantly, the mono and multi-layer porous films are also directly synthesized on commercially supplied ceramic or porcelain tubes which are used for the substrate of gas sensors. And hence, the SnO2 ordered nanostructured porous gas-sensor is constructed. Sensitivity of the sensor can be easily controlled by changing the sizes of polystyrene spheres. Such method is universal and suitable for synthesis of many other oxides or doped porous films, mesoporous/macroporous gas sensor films and even the hetero-multi-layer porous films on the curved surfaces just by changing the compositions of the precursors or alternatively repeating this strategy. This strategy provides a good way to construct nanostructured gas-sensors and practical possibility of the nanostructured devices in the near future.
机译:基于以下事实,提出了一种简单灵活的策略,用于在任何所需的具有平坦或平坦曲面的基材上合成单层或多层纳米结构有序多孔膜,基于这样的事实,即玻璃基材上的聚苯乙烯球体胶体单层可以浮起并漂浮在某些前体上溶液,然后可以将其捡起来转移到任何基材上。因此,仅以容易获得的SnCl / sub 4 /溶液为前体,就成功地分别在圆柱表面,凹面和球形表面上成功地合成了SnO / sub 2 /有序纳米结构多孔膜。更重要的是,单层和多层多孔膜还可以直接在商购的陶瓷或瓷管上合成,所述陶瓷或瓷管用于气体传感器的基板。因此,构造了SnO 2有序的纳米结构多孔气体传感器。通过更改聚苯乙烯球的大小,可以轻松控制传感器的灵敏度。这种方法是通用的,并且仅通过改变前体的成分或替代性地重复该策略,就适用于在弯曲表面上合成许多其他氧化物或掺杂的多孔膜,中孔/大孔气体传感器膜,甚至是异质多层多孔膜。 。该策略为构造纳米结构的气体传感器提供了一个很好的方法,并且为不久的将来纳米结构器件的实际应用提供了可能。

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