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A novel acetone sensor utilizing cataluminescence on layered double oxide

机译:一种在层状双氧化物上利用催化发光的新型丙酮传感器

摘要

This work developed a facile and effective sensor for the determination of acetone, the diabetic biomarker, which was based on cataluminescence (CTL) emission on the surface of layered double oxide (LDO) that is a layered nanomaterial with easy preparation and environmental friendliness. Under the optimized conditions, the linear range of the CTL intensity versus concentration of acetone was 0.1-16 mM with the detection limit of 0.02 mM (S/N = 3). The relative standard deviation (RSD) for 50 repeated measurements of 1.0 mM acetone was 3.6%. Interestingly, there was no or weak response to seven common volatile organic compounds (VOCs), including ethanol, heptanal, ethyl acetate, methanol, formaldehyde, acetic acid and toluene. Furthermore, the proposed CTL sensor was successfully used for sensing acetone inhuman plasma samples of diabetes patients with a satisfactory recovery. The results demonstrated that the proposed CTL sensor had a promising capability for the sensing of acetone in diabetes diagnosis. The possible CTL mechanism from the oxidation of acetone on the surface of LDO was also discussed. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项工作开发了一种用于测定糖尿病生物标志物丙酮的简便有效的传感器,该传感器基于层状双氧化物(LDO)表面的催化发光(CTL)发射,层状双氧化物(LDO)是层状纳米材料,易于制备且对环境友好。在最佳条件下,CTL强度与丙酮浓度的线性范围为0.1-16 mM,检出限为0.02 mM(S / N = 3)。 50次重复测量1.0 mM丙酮的相对标准偏差(RSD)为3.6%。有趣的是,对七个常见的挥发性有机化合物(VOC)没有反应或反应很弱,包括乙醇,庚醛,乙酸乙酯,甲醇,甲醛,乙酸和甲苯。此外,提出的CTL传感器已成功用于感官康复的糖尿病患者丙酮非人血浆样品中。结果表明,提出的CTL传感器在糖尿病诊断中对丙酮的传感具有广阔的应用前景。还讨论了LDO表面丙酮氧化产生的可能的CTL机理。 (C)2014 Elsevier B.V.保留所有权利。

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