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Comparison of glucose enzyme electrodes based on dispersed rhodium particles and cupric hexacyanoferrate within carbon paste transducers

机译:碳糊换能器中基于分散的铑颗粒和六氰合高铁酸铜的葡萄糖酶电极的比较

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摘要

The performance of 'first-generation' amperometric glucose biosensors ba;ed on the dispersion of rhodium particles and metal hexacyanoferrate within carbon paste transducers is critically compared. Both bioelectrodes allow the detection of the glucose substrate at very low potentials where potential interferences are minimized. Performance characteristics of the two biosensors are compared under identical conditions. The rhodinized-carbon biosensor offers higher selectivity, greater inearity, lower sensitivity, and similar response time or shortterm stability compared to the cupric-hexacyanoferrate enzyme electrode. Each of these catalytic transducers thus offer certain advantages, and accordingly may be more suitable for a particular biosensing application. Such assessment of the relative merits of electrocatalytic transducers should serve as a guide fur designing 'first-generation' oxidase-based biosensors for specific applications. [References: 8]
机译:严格比较了基于铑颗粒和六氰合铁酸金属盐在碳糊传感器中的分散性的“第一代”安培型葡萄糖生物传感器的性能。两个生物电极都允许在极低的电势下检测葡萄糖底物,从而将电势干扰降至最低。在相同条件下比较了两个生物传感器的性能特征。与六氰合铁酸铜的酶电极相比,铑-碳生物传感器具有更高的选择性,更大的内在性,更低的灵敏度以及相似的响应时间或短期稳定性。因此,这些催化换能器中的每一个都具有某些优点,因此可能更适合于特定的生物传感应用。对电催化换能器相对优点的这种评估应作为设计针对特定应用的“第一代”基于氧化酶的生物传感器的指南。 [参考:8]

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