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Interaction of Water Vapor with SnO_2 Sensor Materials: a Comparison of DRIFTS and Resistance Measurements

机译:水蒸气与SnO_2传感器材料的相互作用:漂移和电阻测量的比较

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Operando DRIFT spectroscopy together with resistance measurements was used to study sensitivity (here response change upon changing analyte concentration) of undoped SnO_2 materials to water vapors. The materials synthesized using different protocols were found to manifest very different sensitivity to water, as well as to H_2 and CO in dry and humid air. While for one of the materials (SnO_2 Ac) low sensitivity to water combines with similarity between evolution of two bands in OH region and resistance, another material (SnO_2 Cl), with high sensitivity to water vapors, manifests similarity with the resistance only for the broad band between 3590 and 3040 cm~(-1). Together with high sensitivity to water vapors the latter material shows higher sensitivity to CO in dry and humid air, while SnO_2 Ac showed higher sensitivity to H_2.
机译:Operando漂移光谱与电阻测量一起用于研究未掺杂的SNO_2材料对水蒸气的敏感性(随着分析物浓度改变的响应改变)。发现使用不同方案合成的材料表现出对水的非常不同的敏感性,以及干燥和潮湿空气中的H_2和CO。虽然对于其中一种材料(SnO_2 AC)对水的低灵敏度,其与OH区域的两个带中的两个带的演化之间的相似性相似,但另一个材料(SnO_2 Cl),具有高灵敏度的水蒸汽,表现出与抵抗的相似性宽带3590和3040 cm〜(-1)。随着水蒸汽的高敏感性,后一种材料对干燥和潮湿空气的CO令人敏感程度较高,而SNO_2 AC对H_2表示更高的敏感性。

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