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首页> 外文期刊>Sensors and Actuators. B, Chemical >Surface plasmon resonance study on the optical sensing properties of nanometric polyimide films to volatile organic vapours
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Surface plasmon resonance study on the optical sensing properties of nanometric polyimide films to volatile organic vapours

机译:纳米聚酰亚胺薄膜对挥发性有机蒸气的光学传感特性的表面等离子体共振研究

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摘要

The optical sensing properties of nanometric polyimide films towards ethanol and methanol vapours have been investigated by surface plasmon resonance technique. To this purpose polyimide sensing layers have been deposited onto gold/glass substrates by glow-discharge-induced vapour deposition polymerization technique. The sensible layer shows reversible and stable responses to different concentrations of methanol and ethanol vapours. A linear dependence between the change in reflectivity and the vapours concentration is observed being the sensitivity to both vapours similar, however, the response is larger in presence of ethanol vapours. Numerical fitting routines on surface plasmon resonance curves indicate that optical changes are motivated by an absorption process of the analyte. This produces a detectable increase of the real refractive index and a swelling process in the polyimide layer.
机译:通过表面等离振子共振技术研究了纳米聚酰亚胺薄膜对乙醇和甲醇蒸气的光学传感特性。为此,已经通过辉光放电诱导的气相沉积聚合技术将聚酰亚胺感测层沉积在金/玻璃基板上。敏感层显示出对不同浓度的甲醇和乙醇蒸气可逆且稳定的响应。观察到反射率的变化与蒸气浓度之间的线性相关性,即对两种蒸气的敏感性相似,但是,在乙醇蒸气存在下响应更大。表面等离子体共振曲线上的数值拟合程序表明,光学变化是由分析物的吸收过程引起的。这在聚酰亚胺层中产生了实际折射率的可检测到的增加和溶胀过程。

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