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The Efficiency Development of Ammonia-Odor Sensor Based on PSE-Polymer/SWNT Nanocomposite

机译:基于PSE聚合物/ SWNT纳米复合材料的氨 - 气味传感器的效率发展

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In this work, we have investigated and optimized the fabrication process of ammonia sensor based on poly(styrene-co-maleic acid) partial isobutyl/methyl mixed ester/single-wall carbon nanotubes (PSE/SWNT) nanocomposite leading to the standardized and highly efficiency of device. The proper ratio of sensing material loading was achieved by varying the SWNT concentration to reach to the best sensing properties. PSE/SWNT sensors were fabricated by spin-coating technique on the interdigitated gold electrodes by controlling the reference resistance in range of 1-10 k. Two groups of the fabricated sensors (carboxylic functionalized SWNT (SWNT-COOH) and hydroxyl functionalized SWNT (SWNT-OH)) with five different percent loadings were tested with various concentrations of ammonia volatile. Electrical resistances of these sensors were measured and modeled on the percolation theory approach, in order to explain and determine the appropriate composition from their mechanisms.
机译:在这项工作中,我们已经研究并优化了基于聚(苯乙烯 - 二氧化马来酸)部分异丁基/甲基混合酯/单壁纳米复合材料的氨传感器的制造过程,该纳米碳纳米(PSE / SWNT)纳米复合材料导致标准化和高度设备效率。通过改变SWNT浓度来达到最佳感测性能来实现感测材料载荷的适当比率。通过控制1-10 k范围内的参考电阻,通过旋转涂覆技术通过旋转涂覆技术制造PSE / SWNT传感器。用各种浓度的氨挥发测试,两组制造的传感器(羧官能化SWNT(SWNT-COOH)和羟基官能化的SWNT(SWNT-OH))用各种浓度的氨挥发性测试。测量这些传感器的电阻并在渗滤理论方法上进行建模,以解释并确定其机制的适当组合物。

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