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Room temperature gas sensor based on tin dioxide@ polyaniline nanocomposite assembled on flexible substrate: ppb-level detection of NH_3

机译:基于TiN二氧化锡的室温气体传感器,柔性基板组装在柔性基板上:NH_3的PPB水平检测

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摘要

The SnO2@ Polyaniline (PANI) nanocomposites were successfully synthesized via a combined approach of hydrothermal and in-situ polymerization. The morphology and structure of the materials were characterized using SEM and TEM. The specific surface area was analyzed by the Brunauer-Emmett-Teller (BET) equation. The results showed that the materials had micro-structure and large specific surface area. The prepared materials were loaded on flexible polyethylene terephthalate (PET) substrate and their gas sensing properties were investigated at room temperature. Comparing with PANI sensor, the 20 mol% SnO2@ Polyaniline (PASn20) sensor exhibited 6.2 times higher response (R-gas/R-air = 29.8) to 100 ppm NH3 at room temperature. Furthermore, the PASn20 sensor possessed the ability to detect low NH3 concentrations of 10-200 ppb and outstanding selectivity. The enhanced sensing performance was attributed to the micro-structure with large specific surface area and the formation of p-n heterojunctions at the surface between PANI and SnO2.
机译:通过水热和原位聚合的组合方法成功地合成了SnO2 @聚苯胺(PANI)纳米复合材料。使用SEM和TEM表征材料的形态和结构。 Brunauer-Emmett-Teller(BET)方程分析了比表面积。结果表明,该材料具有微结构和大的比表面积。将制备的材料负载在柔性聚对苯二甲酸乙二醇酯(PET)基材上,并在室温下研究了它们的气体传感性能。与PANI传感器相比,20mol%SNO2 @聚苯胺(PASN20)传感器在室温下表现出6.2倍较高的响应(R-气/ R-AIR = 29.8)至100ppm NH 3。此外,PASN20传感器具有检测10-200ppb的低NH 3浓度和出色的选择性的能力。增强的感测性能归因于具有大的比表面积的微结构以及在PANI和SNO2之间的表面形成的P-N异质功能。

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