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Three-Dimensional Mesoporous Graphene Aerogel-Supported SnO2 Nanocrystals for High-Performance NO2 Gas Sensing at Low Temperature

机译:三维介孔石墨烯气凝胶支撑的SnO2纳米晶体,用于低温下的高性能NO2气体传感

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摘要

A facile and cost-efficient hydrothermal and lyophilization two-step strategy has been developed to prepare three-dimensional (3D) SnO2/rGO composites as NO2 gas sensor. In the present study, two different metal salt precursors (Sn2+ and Sn4+) were used to prepare the 3D porous composites. It was found that the products prepared from different tin salts exhibited different sensing performance for NO2 detection. The scanning electron microscopy and transmission electron microscopy characterizations clearly show the macroporous 3D hybrids, nanoporous structure of reduce graphene oxide (rGO), and the supported SnO2 nanocrystals with an average size of 2-7 nm. The specific surface area and porosity properties of the 3D mesoporous composites were analyzed by Braunauer-Emmett-Teller method. The results showed that the SnO2/rGO composite synthesized from Sn4+ precursor (SnO2/rGO-4) has large surface area (441.9 m(2)/g), which is beneficial for its application as a gas sensing material. The gas sensing platform fabricated from the SnO2/rGO-4 composite exhibited a good linearity for NO2 detection, and the limit of detection was calculated to be as low as about 2 ppm at low temperature. The present work demonstrates that the 3D mesoporous SnO2/rGO composites with extremely large surface area and stable nanostructure are excellent candidate materials for gas sensing.
机译:已经开发了一种简便且经济高效的水热和冻干两步策略,以制备三维(3D)SnO2 / rGO复合材料作为NO2气体传感器。在本研究中,使用了两种不同的金属盐前体(Sn2 +和Sn4 +)来制备3D多孔复合材料。发现由不同锡盐制备的产物对NO 2检测表现出不同的感测性能。扫描电子显微镜和透射电子显微镜的特征清楚地显示了大孔3D杂化物,还原氧化石墨烯(rGO)的纳米孔结构以及平均尺寸为2-7 nm的负载型SnO2纳米晶体。通过Braunauer-Emmett-Teller方法分析了3D中孔复合材料的比表面积和孔隙率特性。结果表明,由Sn4 +前驱体(SnO2 / rGO-4)合成的SnO2 / rGO复合材料具有较大的表面积(441.9 m(2)/ g),有利于其作为气体传感材料的应用。由SnO2 / rGO-4复合材料制成的气体传感平台对NO2的检测显示出良好的线性,在低温下,检测限被计算为低至约2 ppm。目前的工作表明具有极大表面积和稳定纳米结构的3D介孔SnO2 / rGO复合材料是用于气体传感的优秀候选材料。

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