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采用薄离子液体层对乙烯进行电化学传感。

Electrochemical sensing of ethylene employing a thin ionic-liquid layer.

机构信息

Holst Centre/imec The Netherlands, High Tech Campus 31, Eindhoven, the Netherlands.

出版信息

Anal Chem. 2011 Aug 15;83(16):6300-7. doi: 10.1021/ac2009756. Epub 2011 Jul 20.

Abstract

We introduce an electrochemical ethylene sensor that employs a thin layer of ionic liquid as electrolyte. Ethylene is oxidized in a potential window starting ∼600 mV before the onset of the gold working electrode oxidation, which inhibits the ethylene oxidation at high applied potential. The current amplitude and sensor response time depend on the ionic-liquid film thickness, relative humidity, and applied potential, in agreement with a theoretical model based on diffusion. A detection limit of 760 ppb and a linear response up to 10 ppm were achieved. As illustrated by the detection of ethylene, ionic liquids could serve as an alternative electrolyte for many electrochemical gas sensors that heretofore relied on a strongly acidic electrolyte.

摘要

我们介绍了一种电化学乙烯传感器,它采用了一层很薄的离子液体作为电解质。在金工作电极氧化开始之前,约在 600 mV 之前,乙烯在一个电势窗口中被氧化,这抑制了高施加电势下的乙烯氧化。电流幅度和传感器响应时间取决于离子液体膜的厚度、相对湿度和施加的电势,这与基于扩散的理论模型一致。检测限达到 760 ppb,线性响应高达 10 ppm。正如通过乙烯的检测所表明的,离子液体可以作为许多电化学气体传感器的替代电解质,这些传感器迄今依赖于强酸性电解质。

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