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Nanocrystalline composed sno2 inverse opal for highly sensitive acetone gas sensor at ppb-level**

机译:纳米晶体组成的SnO2反蛋白是PPB级高敏感的丙酮气体传感器**

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The exhaled acetone concentration of diabetic patients is much higher than that of normal persons, which can be used for early warning, large-scale screening, and adjuvant treatment for diabetes. Therefore, a non-invasive exhaled acetone sensor with a low detection limit, high sensitivity, and high reliability is widely studied. Their sensing performance largely depends on the chemical composition of sensing materials, surface modification, the microstructure of the sensing layer. In this paper, Tin oxide (SnO2) nanocrystalline composed inverse opal structure were successfully prepared, using polystyrene microspheres as templates, as a sensing material for an acetone gas sensor. Compared with pure SnO2 prepared by the hydrothermal method, inverse opal SnO2 has a much higher response at a low concentration of 500ppb-10ppm, Up to 5.6 response at 1ppm(240°C), which is already suitable for diabetes screening without doping noble metal. The improvement of gas sensitivity is mainly due to the small size of the SnO2 nanoparticles and the pore structure composed of the nanocrystalline. The relatively high response, fast response and recovery speed, and good stability make it a promising gas sensor material for screening and monitoring of diabetes.
机译:糖尿病患者的呼出丙酮浓度远高于正常人的浓度,可用于糖尿病的预警,大规模筛选和佐剂治疗。因此,广泛研究了具有低检测极限,高灵敏度和高可靠性的非侵入性呼出的丙酮传感器。它们的感测性能在很大程度上取决于感测材料的化学成分,表面改性,感测层的微观结构。本文氧化锡(SNO 2 )使用聚苯乙烯微球作为模板成功制备纳米晶组合的反蛋白石结构,作为丙酮气体传感器的传感材料。与纯粹的SnO相比 2 由水热法制备,逆蛋白石SnO制备 2 在低浓度为500ppb-10ppm的浓度下具有更高的响应,在1ppm(240°C)的响应最高为5.6,这已经适用于糖尿病筛选而不掺杂贵金属。气体敏感性的提高主要是由于SNO的尺寸小 2 纳米颗粒和由纳米晶体组成的孔结构。相对较高的响应,快速响应和恢复速度,良好的稳定性使其成为筛选和监测糖尿病的有希望的气体传感器材料。

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