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首页> 外文期刊>Electroanalysis >Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 8. Selectivity at poly(vinyl alcohol)-polyelectrolyte blend modified optically transparent electrodes
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Spectroelectrochemical sensing based on multimode selectivity simultaneously achievable in a single device. 8. Selectivity at poly(vinyl alcohol)-polyelectrolyte blend modified optically transparent electrodes

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。 8.聚乙烯醇-聚电解质共混物改性光学透明电极的选择性

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Poly(vinyl alcohol) (PVA)-based polymer blends show potential utility as polymer films for a newly designed spectroelectrochemical sensor to achieve three modes of selectivity charge-selective partitioning, electrolysis potential, and spectral absorption wavelength. The polymer blends were formulated by entrapping two polyelectrolytes, poly(vinylbenzyltrimethylammonium chloride) (PVTAC) and poly(acrylic acid) (PAA) into a cross-linked PVA matrix, which was covalently coated onto the surface of ITO glass. Sensing of the analyte is based on the change in attenuation of the light guiding through an optical substrate resulting from an electrochemical reaction of the analyte induced by electromodulation. The signal of the analyte in a competitive binary system is isolated by careful choice of polymer modifying film, potential window and monitoring wavelength. A 10(-4) M equimolar binary solution of Ru(BiPy)(3)(2+) and Fe(CN)(6)(3-) was used to study the selectivity of charge-selective partitioning. Cyclic voltammograms clearly demonstrated the exclusion of same charged ions from the selective layer with polymer blend modified sensors. 10(-4) M equimolar Ru(CN)(6)(4-) and Fe(CN)(6)(4-) was chosen to demonstrate the selectivities of electrolysis potential acid spectral absorbance wavelength. The detailed kinetics and associated electrochemical and optical waveforms from the spectroelectrochemical sensors in competitive binary mixtures of analytes are presented. [References: 9]
机译:基于聚乙烯醇(PVA)的聚合物共混物具有潜在的实用性,可作为新设计的光谱电化学传感器的聚合物薄膜,以实现选择性电荷选择性分配,电解电势和光谱吸收波长的三种模式。通过将两种聚电解质(聚乙烯基苄基三甲基氯化铵)(PVTAC)和聚丙烯酸(PAA)截留在交联的PVA基质中来配制聚合物共混物,该基质共价涂覆在ITO玻璃的表面上。分析物的感测是基于由电调制引起的分析物的电化学反应而导致的穿过光学基板的光的衰减变化。通过仔细选择聚合物修饰膜,电势窗口和监测波长,可以隔离竞争性二元系统中分析物的信号。 Ru(BiPy)(3)(2+)和Fe(CN)(6)(3-)的10(-4)M等摩尔二元溶液用于研究电荷选择性分配的选择性。循环伏安图清楚地表明,使用聚合物共混物修饰的传感器从选择层中排除了相同的带电离子。选择10(-4)M等摩尔Ru(CN)(6)(4-)和Fe(CN)(6)(4-)来证明电解电位酸性光谱吸收波长的选择性。给出了竞争性分析物二元混合物中光谱电化学传感器的详细动力学以及相关的电化学和光学波形。 [参考:9]

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