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基于浸渍有pH响应性三角烯染料的聚硅氧烷-聚乙二醇复合材料的光学pH传感器的时间响应研究。

Investigating the Time Response of an Optical pH Sensor Based on a Polysiloxane-Polyethylene Glycol Composite Material Impregnated with a pH-Responsive Triangulenium Dye.

作者信息

Frankær Christian G, Sørensen Thomas J

机构信息

Nano-Science Center & Department of Chemistry, University of Copenhagen, Universitetsparken 5, 2100 Copenhagen, Denmark.

FRS-systems ApS, Hovedgaden 20, 4621 Gadstrup, Denmark.

出版信息

ACS Omega. 2019 May 10;4(5):8381-8389. doi: 10.1021/acsomega.9b00795. eCollection 2019 May 31.

Abstract

Determining the time it takes a sensor to report a change in the concentration of its target analyte may appear to be an easy task, but it is not. The dynamic characteristic of a sensor is determined by all components in the sensor system and the hydrodynamics of the sample. Here, the dynamic properties of an optical pH sensor were determined using the IUPAC-recommended activity step method in experimental setups that can determine sensor-limited response times longer than 5 s. In order to do so, experimental setups for the injection and for the dipping method of determining the sensor time response were developed, tested, and shown to be able to determine time-response curves with 1 s time resolution. This time resolution is shown to be sufficient for determining dynamic characterization of this optical pH sensor. The sensor chemistry-limited time-response curves were analyzed using curve fitting. It was found that the optode response time is limited by diffusion of protons within the sensor material when the proton concentration is reduced and limited by diffusion from the bulk to the boundary layer at the optode surface when proton concentration is increased. The latter is dependent on the magnitude of the change in analyte concentration and cannot be reported as a single response time. The investigation of the time response of the optical pH sensor reveals detailed information of the sensor chemistry, but does not yield a single response time of the sensor capable of describing the dynamic sensor characteristics of the optical pH sensor system.

摘要

确定传感器报告其目标分析物浓度变化所需的时间看似是一项简单任务,但实则不然。传感器的动态特性由传感器系统中的所有组件以及样品的流体动力学决定。在此,使用国际纯粹与应用化学联合会(IUPAC)推荐的活性阶跃法,在能够确定超过5秒的传感器受限响应时间的实验装置中,测定了光学pH传感器的动态特性。为此,开发、测试了用于测定传感器时间响应的注射法和浸渍法的实验装置,并证明其能够以1秒的时间分辨率确定时间响应曲线。结果表明,该时间分辨率足以确定此光学pH传感器的动态特性。使用曲线拟合分析了传感器化学受限的时间响应曲线。结果发现,当质子浓度降低时,光极响应时间受质子在传感器材料内扩散的限制;当质子浓度增加时,受从本体扩散到光极表面边界层的限制。后者取决于分析物浓度变化的幅度,不能作为单个响应时间来报告。对光学pH传感器时间响应的研究揭示了传感器化学的详细信息,但并未得出能够描述光学pH传感器系统动态传感器特性的传感器单个响应时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec4/6648965/fc6e61312b0b/ao-2019-007952_0001.jpg

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