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Layer thickness impact on the capacity of poly(urethaneimide) for sorbing toxic gases

机译:层厚对聚氨基甲酸酯吸收有毒气体的能力有影响

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摘要

The sensitivity of a thick layer (500 nm) of poly(urethaneimide) to toxic gases such as pyridine and hexamethyleneimine was studied by the quartz crystal microbalance method. The resonant frequency was registered by a spectrum analyzer. The successful overcoming of the unfavorable impact of the increased viscous damping, typical for the standard oscillator measurement method, allowed complete understanding of the behavior of a thick polymer layer toward highly pollutant gases. Quantitative information for polymer adsorption capacity and gas diffusivity was extracted. The comparison with our recent results for thinner layers revealed strong dependence on layer thickness for pyridine whereas the corresponding effect with hexamethyleneimine was found much less significant. Intermolecular interactions and the impact of the gas physical adsorption on the polymer matrix properties were shown as the driving parameters for the sensors response. The thickness dependence provides a tool for tuning the sensitivity of a potentially efficient poly(urethaneimide) sensor for pyridine. (C) 2016 Wiley Periodicals, Inc.
机译:用石英晶体微量天平法研究了聚氨基甲酸酯厚层(500 nm)对吡啶和六亚甲基亚胺等有毒气体的敏感性。共振频率由频谱分析仪记录。成功地克服了标准振荡器测量方法中典型的增加的粘性阻尼的不利影响,可以完全理解厚聚合物层对高污染气体的行为。提取了聚合物吸附能力和气体扩散率的定量信息。与我们最近的较薄层结果的比较表明,吡啶对层厚的依赖性很大,而六亚甲基亚胺的相应作用却不那么明显。分子间的相互作用和气体物理吸附对聚合物基体性能的影响被显示为传感器响应的驱动参数。厚度依赖性提供了一种工具,可用于调节潜在有效的聚(氨基甲酰亚胺)吡啶传感器的灵敏度。 (C)2016威利期刊公司

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