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Synergy Effect of Au and SiO2 Modification on SnO2 Sensor Properties in VOCs Detection in Humid Air

机译:Au和SiO2修饰对湿气中VOCs检测中SnO2传感器性能的协同作用。

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摘要

Nanocomposites based on Au- and SiO -modified SnO were studied as sensitive materials for ethanol and benzene detection in dry (RH = 1%) and humid (RH = 20%) air. Modification of SnO by amorphous SiO (13 mol.%) was effectuated by hydrothermal synthesis; modification by Au nanoparticles (1 wt.%) was carried out via impregnation by citrate-stabilized Au sol. The composition of the samples was determined by X-ray fluorescent spectroscopy and energy-dispersive X-ray spectroscopy. The microstructure was characterized by XRD, HRTEM, and low-temperature nitrogen adsorption. The surface groups were investigated by XPS, TPR-H , and FTIR spectroscopy. DRIFT spectroscopy was performed to investigate the interaction between ethanol and the surface of the synthesized materials. Studies of the sensor properties have shown that in all cases the most sensitive is the SnO /SiO -Au nanocomposite. This material retains high sensitivity even in a humid atmosphere. The obtained results are discussed in terms of the synergistic effect of two modifiers (Au and SiO ) in the formation of sensor properties of SnO /SiO –Au nanocomposites.
机译:研究了基于Au和SiO改性SnO的纳米复合材料,作为在干燥(RH = 1%)和潮湿(RH = 20%)的空气中检测乙醇和苯的灵敏材料。通过水热合成实现了无定形SiO(13摩尔%)对SnO的改性;通过用柠檬酸盐稳定的Au溶胶浸渍来进行Au纳米颗粒(1 wt。%)的改性。样品的组成通过X射线荧光光谱和能量色散X射线光谱测定。通过XRD,HRTEM和低温氮吸附对微结构进行了表征。通过XPS,TPR-H和FTIR光谱研究了表面基团。进行了DRIFT光谱研究乙醇与合成材料表面之间的相互作用。对传感器性能的研究表明,在所有情况下,最敏感的是SnO / SiO-Au纳米复合材料。这种材料即使在潮湿的环境下也能保持高灵敏度。根据两种改性剂(Au和SiO)对SnO / SiO -Au纳米复合材料传感器性能形成的协同作用,讨论了获得的结果。

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