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A novel conductometric sensor based on hierarchical self-assembly nanoparticles Sm2O3 for VOCs monitoring

机译:一种基于分层自组装纳米粒子SM2O3的新型电导传感器,用于VOCS监测

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摘要

Hierarchical self-assembly structured Sm2O3 nanoparticles were prepared by a simple and cost effective hydrothermal method and subsequent annealing at 800 degrees C in air. The size, shape and phase composition of the structures synthesized by changing the hydrothermal processing time were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD), micro-Raman and photoluminescence (PL) analysis. Upon varying the timing of hydrothermal process (from 24 to 36 h) SEM analysis highlighted differences in the aggregation and coalescence of particles. XRD patterns revealed their crystalline nature while from Raman active modes the C-type structure of cubic Sm2O3 was confirmed. Sensor performances of the synthesized Sm2O3 nanostructures have been investigated for the monitoring of two important volatile organic compounds (VOCs) such as ethanol and acetone. The sensitivity, selectivity and response repeatability of the fabricated conductometric sensors were reported for the first time. Results demonstrate that Sm2O3 nanoparticles are effective in the monitoring of low concentration of both acetone and ethanol in air.
机译:通过简单且成本有效的水热法制备了等级自组装结构SM2O3纳米颗粒,随后在空气中以800℃的800℃退火。通过改变水热处理时间合成的结构的尺寸,形状和相组成通过扫描电子显微镜(SEM),X射线衍射(XRD),微拉曼和光致发光(PL)分析来表征通过改变水热处理时间。在改变水热过程的时序(从24至36小时)SEM分析突出显示颗粒聚集和聚结的差异。 XRD图案揭示了它们的结晶性质,同时从拉曼有源模式确定立方SM2O3的C型结构。已经研究了合成的SM2O3纳米结构的传感器性能,用于监测两个重要的挥发性有机化合物(VOC),如乙醇和丙酮。首次报道了制造的电导传感器的灵敏度,选择性和反应可重复性。结果表明,SM2O3纳米颗粒在空气中监测丙酮和乙醇的低浓度。

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