首页> 外文学位 >Analysis of the detection of organophosphate pesticides in aqueous solutions using polymer-coated single IDT sensors.
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Analysis of the detection of organophosphate pesticides in aqueous solutions using polymer-coated single IDT sensors.

机译:使用涂有聚合物的单个IDT传感器对水溶液中有机磷酸酯农药的检测进行分析。

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摘要

The single interdigital transducer (IDT) device was investigated as a micro-chemical sensor for the detection of organophosphates compounds in aqueous solutions. The compounds of interest are: parathion, parathion-methyl, and paraoxon. The polymers used as a partially-selective coating for the direct detection of these compounds are 2,2'-diallylbisphenol A- 1,1,3,3,5,5-hexamethyltrisiloxane (BPA-HMTS) and polyepichlorohydrin (PECH). BPA-HMTS is synthesized here at Marquette University.;The measurement of interest for the single IDT is the change radiation resistance. The radiation resistance represents the energy stored in the propagating acoustic wave. As analyte absorbs into the polymer coating, changes in the film's properties will undergo resulting in a change in the radiation resistance i.e the acoustic wave properties. The film's properties changing include: added mass, viscoelastic properties, thickness, and dielectric properties. These properties will contribute to an overall change in the radiation resistance. A linear change in the radiation resistance is expected to occur for increasing concentrations of an organophosphate.;The experimental results indicate that BPA-HMTS shows greater sensitivity towards the organophosphates than PECH. Both polymers showed greatest to lowest sensitivity to parathion, parathion-methyl, and paraoxon respectively. Thicker films tested for both polymers, 0.75&mgr;m thick, show a higher response due to a more pronounced effect of mass loading than the thinner films tested, 0.50&mgr;m. The response times for BPA-HMTS were much faster than for PECH. Both films showed fastest to slowest response time to paraoxon, parathion-methyl, and parathion respectively.;The sensor is tested for reproducibility for the polymer BP-HMTS. A sensor array consisting of separately tested devices from this work as well as work done by a previous student is utilized to increase the selectivity of the three organophosphates. Radial plots are performed for each organophosphate and concentration using the change in radiation resistance, response time, and frequency shift for both BPA-HMTS and PECH at 0.50&mgr;m as input parameters. These plots yield unique recognition patterns for each organophosphate that can be used to distinguish one from another.
机译:研究了单一叉指式换能器(IDT)设备作为一种微化学传感器,用于检测水溶液中的有机磷酸酯化合物。目标化合物是:对硫磷,甲基对硫磷和对氧磷。用于直接检测这些化合物的部分选择涂层的聚合物是2,2'-二烯丙基双酚A-1,1,3,3,3,5,5-六甲基三硅氧烷(BPA-HMTS)和聚表氯醇(PECH)。 BPA-HMTS是在Marquette大学合成的。单个IDT的关注度量是抗辐射性变化。辐射阻抗表示存储在传播的声波中的能量。当分析物吸收到聚合物涂层中时,薄膜特性的变化将导致辐射电阻即声波特性的变化。薄膜的性能变化包括:附加质量,粘弹性,厚度和介电性能。这些性质将有助于辐射电阻的总体变化。随着有机磷酸酯浓度的增加,预期辐射强度会发生线性变化。实验结果表明,BPA-HMTS对有机磷酸酯的敏感性高于PECH。两种聚合物分别显示出对硫磷,甲基对硫磷和对氧磷的最大至最低敏感性。两种聚合物的测试厚度为0.75μm的较厚膜,由于质量负荷的影响比被测试的较薄的膜0.50mg / m,表现出更高的响应。 BPA-HMTS的响应时间比PECH快得多。两种膜都分别显示出对氧磷,甲基对硫磷和对硫磷的最快至最慢响应时间。测试了传感器对聚合物BP-HMTS的重现性。由这项工作以及以前的学生完成的单独测试的设备组成的传感器阵列可用于提高三种有机磷酸酯的选择性。使用BPA-HMTS和PECH在0.50 mgr; m时的辐射电阻,响应时间和频移的变化作为输入参数,对每种有机磷酸盐和浓度进行径向绘图。这些图为每种有机磷酸酯提供了独特的识别模式,可用于区分彼此。

著录项

  • 作者

    McCarthy, Michael.;

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Engineering Electronics and Electrical.;Physics Acoustics.
  • 学位 M.E.
  • 年度 2014
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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