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含离子载体的硅橡胶膜:传统离子选择电极与基于硅纳米线的场效应晶体管之间的直接比较。

Ionophore-containing siloprene membranes: direct comparison between conventional ion-selective electrodes and silicon nanowire-based field-effect transistors.

作者信息

Cao Anping, Mescher Marleen, Bosma Duco, Klootwijk Johan H, Sudhölter Ernst J R, de Smet Louis C P M

机构信息

Department of Chemical Engineering, Delft University of Technology , Julianalaan 136, 2628 BL Delft, The Netherlands.

出版信息

Anal Chem. 2015 Jan 20;87(2):1173-9. doi: 10.1021/ac504500s. Epub 2014 Dec 23.

Abstract

Siloprene-based, ion-selective membranes (ISMs) were drop-casted onto a field-effect transistor device that consisted of a single-chip array of top-down prepared silicon nanowires (SiNWs). Within one array, two sets of SiNWs were covered with ISMs, each containing two different ionophores, allowing the simultaneous sensing of K and Na ions using a flow cell. It is shown that both ions can be effectively detected in the same solution over a wide concentration range from 10(-4) to 10(-1) M without interference. The ISMs were also analyzed in a conventional ISE configuration, allowing a direct comparison. While the responses for K(+) were similar for both sensor configurations, remarkably, the Na(+) response of the ISM-covered SiNW device was found to be higher than the one of the ISE configuration. The addition of a Na(+) buffering hydrogel layer between the SiO2 of the SiNW and the ISM reduced the response, showing the importance of keeping the boundary potential at the SiO2/ISM interface constant. The responses of the siloprene-covered SiNW devices were found to be stable over a period of at least 6 weeks, showing their potential as a multichannel sensor device.

摘要

基于硅橡胶的离子选择性膜(ISMs)被滴铸到一个场效应晶体管器件上,该器件由自上而下制备的单芯片硅纳米线(SiNWs)阵列组成。在一个阵列中,两组SiNWs覆盖有ISMs,每组包含两种不同的离子载体,从而能够使用流通池同时检测钾离子和钠离子。结果表明,在10^(-4)至10^(-1) M的宽浓度范围内,两种离子都能在同一溶液中被有效检测,且无干扰。ISMs也在传统的离子选择性电极配置中进行了分析,以便进行直接比较。虽然两种传感器配置对K(+)的响应相似,但值得注意的是,发现覆盖有ISM的SiNW器件对Na(+)的响应高于离子选择性电极配置的响应。在SiNW的SiO2和ISM之间添加一层Na(+)缓冲水凝胶层会降低响应,这表明保持SiO2/ISM界面处的边界电位恒定很重要。发现覆盖有硅橡胶的SiNW器件的响应在至少6周的时间内是稳定的,显示出它们作为多通道传感器器件的潜力。

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