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Spectroelectrochemical Sensing Based on Multimode Selectivity Simultaneously Achievable in a Single Device. 1. Demonstration of Concept with Ferricyanide

机译:可在单个设备中同时实现基于多模式选择性的光谱电化学传感。 1.用铁氰化物论证概念

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A new type of spectroelectrochemical sensor that demonstrates three modes of selectivity (electrochemistry, spectroscopy, and selective partitioning) is demonstrated. The sensor consists of an optically transparent electrode (OTE) coated with a selective film. Sensing is based on the change in the attenuation of light passing through the OTE that accompanies an electrochemical reaction of the analyte at the electrode surface. Thus, for an analyte to be detected, it must partition into the selective coating and be electrolyzed at the potential applied to the electrode, and either the analyte or its electrolysis product must absorb light at the wavelength chosen. Selectivity for the analyte relative to other solution components is obtained by choice of coating material, electrolysis potential, and wavelength for optical monitoring. The sensor concept is demonstrated with an OTE consisting of an indium-fin oxide coating on glass that has been over-coated with a sol-gel-derived charge-selective thin film. Attenuated total reflection (ATR) is used as the optical detection mode. The selective coating was an anionically charge-selective sol-gel-derived PDMDAAC-SiO↓(2) composite film, where PDMDAAC = poly(dimethyldiallylammonium chloride). Fe(CN)↓(6)↑(4-) was used as a model analyte to demonstrate that the change in the transmittance of the ATR beam resulting from oxidation of Fe(CN)↓(6)↑(4-) to Fe(CN)↓(6)↑(3-) can be used to quantify an analyte. The unoptimized sensor exhibited the following characteristics: linear range, 8.0 × 10↑(-6)-5.0 × 10↑(-5) M; sensitivity, 8.0 × 10↑(3)△A/M; and detection limit, 8.0 × 10↑(-6) M.
机译:展示了一种新型的光谱电化学传感器,该传感器演示了三种选择性模式(电化学,光谱学和选择性分配)。该传感器由涂有选择性膜的光学透明电极(OTE)组成。感应基于通过OTE的光衰减的变化,该变化伴随着被分析物在电极表面的电化学反应。因此,对于要检测的分析物,它必须分配到选择性涂层中并在施加到电极的电势下进行电解,并且分析物或其电解产物必须吸收所选波长的光。通过选择涂层材料,电解电势和光学监控波长,可以获得相对于其他溶液组分的分析物选择性。传感器概念通过OTE进行了演示,该OTE由玻璃上的铟锡氧化物涂层组成,该涂层上已涂有溶胶凝胶衍生的电荷选择性薄膜。衰减全反射(ATR)用作光学检测模式。选择性涂层是阴离子电荷选择性溶胶-凝胶衍生的PDMDAAC-SiO↓(2)复合膜,其中PDMDAAC =聚二甲基二烯丙基氯化铵。 Fe(CN)↓(6)↑(4-)被用作模型分析物,以证明由于Fe(CN)↓(6)↑(4-)氧化成Fe而引起的ATR光束透射率的变化(CN)↓(6)↑(3-)可用于定量分析物。未优化的传感器具有以下特性:线性范围,8.0×10↑(-6)-5.0×10↑(-5)M;灵敏度8.0×10↑(3)△A / M;检测限8.0×10↑(-6)M.

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