首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characterization of the Temporal Response Profile of Carbon Black-Polymer Composite Detectors to Volatile Organic Vapors
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Characterization of the Temporal Response Profile of Carbon Black-Polymer Composite Detectors to Volatile Organic Vapors

机译:炭黑-聚合物复合探测器对挥发性有机蒸气的时间响应曲线的表征

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摘要

The relative differential resistance responses of carbon black-poly(ethylene-co-vinyl acetate) (PEVA) composite vapor detectors were evaluated in response to short rise time (<2 ms for a 17 ms pulse length) square pulses of acetone, n-hexane, methanol, 2-propanol, or toluene, in a background of synthetic air. The use of ultrathin films, along with a rapid vapor delivery system, facilitated measurement of the rapid time response available from this exemplary carbon black-polymer composite chemiresistive film for the detection of common organic vapors. Detectors formed from very thin (<200 nm) PEVA-carbon black composites produced steady-state responses within 17 ms upon exposure to methanol and produced steady-state responses within 90 ms upon exposure to toluene, acetone, and n-hexane. In accord with Fickian diffusion, the response times of the relative differential resistance of PEVA-carbon black detectors to analyse exposures were proportional to the square of the film thickness, l, in the range 510 ≤ l ≤ 5700 nm. Additionally, the relative differential resistance versus time profiles of PEVA-carbon black detectors were well fit by a simple finite difference model based on Fickian analyte diffusion, using a single analyte diffusion coefficient, for a variety of different film thicknesses and analyte concentrations.
机译:响应于短上升时间(对于17 ms的脉冲长度,<2 ms),丙酮的正脉冲,n-合成空气为背景的己烷,甲醇,2-丙醇或甲苯。超薄膜的使用以及快速的蒸汽输送系统有助于测量从该示例性炭黑-聚合物复合化学阻滞膜中可用于检测常见有机蒸汽的快速时间响应。由非常薄(<200 nm)的PEVA-炭黑复合材料形成的检测器在暴露于甲醇后17毫秒内产生稳态响应,而在暴露于甲苯,丙酮和正己烷时在90毫秒内产生稳态响应。根据菲克扩散,PEVA-炭黑检测器的相对微分电阻的响应时间(用于分析曝光)与薄膜厚度的平方成正比,范围为510≤l≤5700 nm。此外,通过基于菲克分析物扩散的简单有限差分模型(使用单个分析物扩散系数),针对各种不同的膜厚和分析物浓度,PEVA炭黑检测器的相对差分电阻随时间变化曲线非常吻合。

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