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Tunable and high refractive index polydimethylsiloxane polymers for label-free optical sensing.

机译:可调谐和高折射率的聚二甲基硅氧烷聚合物,用于无标签的光学传感。

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摘要

There is a need for chemical sensors for monitoring volatile organic compounds (VOCs) in air. Acute and chronic inhalation of toxic VOCs can cause adverse health effects in humans, so monitoring these analytes is important for ensuring that their concentrations are maintained below maximum permissible levels. Chemical sensors using polydimethylsiloxane (PDMS) to extract VOCs with partial selectivity, coupled with label-free optical detection methods based on refractive index, can overcome the limitations of conventional VOC detection methods.;The ability to use tunable refractive index PDMS films to differentiate between m-xylene and cyclohexane was demonstrated by monitoring changes in refractive index and thickness following absorption of these analytes using a refractometer at 1550 nm. The sensitivity of the refractive index response to an analyte using a particular PDMS film was dependent upon the difference between the refractive index of the analyte and film, as well as the film-air partition coefficient of the analyte. The detection limits for m-xylene and cyclohexane were 81 ppm and 4940 ppm, respectively, using PDMS-titanium-oxo nanocomposites with 5 and 10 mol % Ti, respectively.;A simple planar waveguide sensor with an input grating coupler was developed to monitor changes in refractive index of the cladding through shifts in peak resonance wavelength. Using high refractive index PDMS materials as the waveguide core, we monitored changes in refractive index arising from absorption of VOCs into the grating. Here, the sensitivity of the waveguide response was dependent upon the difference in refractive index of the analyte and polymer, as well as the film-air partition coefficient of the analyte. The detection limits for m-xylene and cyclohexane were 1980 ppm and 18000 ppm, respectively.;A variety of tunable and high refractive index PDMS materials were developed by incorporating a range of titanium and zirconium concentrations (2.5 -- 30 mol % and 2.5 -- 15 mol %, respectively) using a simple sol-gel synthesis and by incorporating a range of titanium concentrations (2.5 -- 10 mol %) into naphthyl-functionalized PDMS. These materials ranged in refractive index from 1.4023 +/- 0.0002 to 1.5663 +/- 0.0001 at 635 nm and 1.3942 +/- 0.0003 to 1.5510 +/- 0.0007 at 1550 nm.
机译:需要用于监测空气中的挥发性有机化合物(VOC)的化学传感器。急性和慢性吸入有毒的VOC会对人体造成不利的健康影响,因此监测这些分析物对于确保将其浓度保持在最大允许水平以下非常重要。使用聚二甲基硅氧烷(PDMS)提取部分选择性VOC的化学传感器,再加上基于折射率的无标记光学检测方法,可以克服传统VOC检测方法的局限性;使用可调折射率PDMS膜区分的能力通过使用折射计在1550 nm处监测这些分析物的吸收后,折射率和厚度的变化来证明间二甲苯和环己烷的变化。使用特定的PDMS膜对分析物的折射率响应的灵敏度取决于分析物和膜的折射率之间的差异以及分析物的膜-空气分配系数。使用分别具有5和10 mol%Ti的PDMS-钛-氧代纳米复合材料,间二甲苯和环己烷的检出限分别为81 ppm和4940 ppm .;开发了一种带有输入光栅耦合器的简单平面波导传感器,用于监测通过峰值共振波长的变化改变包层的折射率。使用高折射率PDMS材料作为波导芯,我们监测了VOC吸收到光栅中引起的折射率变化。在此,波导响应的灵敏度取决于分析物和聚合物的折射率差异以及分析物的膜空气分配系数。间二甲苯和环己烷的检出限分别为1980 ppm和18000 ppm .;通过结合一定范围的钛和锆浓度(2.5-30 mol%和2.5-通过简单的溶胶-凝胶合成并将15%的钛浓度(2.5-10 mol%)掺入萘基官能化的PDMS中,分别获得15 mol%的浓度。这些材料在635 nm处的折射率范围为1.4023 +/- 0.0002至1.5663 +/- 0.0001,在1550 nm处的折射率范围为1.3942 +/- 0.0003至1.5510 +/- 0.0007。

著录项

  • 作者

    Little, Jessamyn R. L.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Chemistry Inorganic.;Chemistry Polymer.;Chemistry Organic.
  • 学位 M.Sc.
  • 年度 2013
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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