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Highly Sensitive Aluminium(III) Ion Sensor Based on a Self-assembled Monolayer on a Gold Nanoparticles Modified Screen-printed Carbon Electrode

机译:高敏感的铝(III)离子传感器基于在金纳米颗粒上修饰的丝网印刷碳电极上的自组装单层

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A new approach for the development of a highly sensitive aluminium(III) ion sensor via the preconcentration of aluminium(III) ion with a self-assembled monolayer on a gold nanoparticles modified screen-printed carbon electrode and current mediation by potassium ferricyanide redox behavior during aluminium(III) ion binding has been attempted. A monolayer of mercaptosuccinic acid served as an effective complexation ligand for the preconcentration of trace aluminium; this led to an enhancement of aluminium(III) ion capture and thus improved the sensitivity of the sensor with a detection limit of down to the ppb level. Under the optimum experimental conditions, the sensor exhibited a wide linear dynamic range from 0.041 to 12.4 μM. The lower detection limit of the developed sensor was 0.037 μM (8.90 ppb) using a 10 min preconcentration time. The sensor showed excellent selectivity towards aluminium(III) ion over other interference ions.
机译:一种新方法,用于通过铝(III)离子的前浓度(III)离子的高敏感铝(III)离子传感器在金纳米粒子上改性丝网印刷的碳电极和通过铁氰化钾氧化铈行为的当前调解进行已经尝试了铝(III)离子结合。单层巯基琥珀酸作为痕量铝的前浓度的有效络合配体;这导致了铝(III)离子捕获的增强,从而提高了传感器的灵敏度,以检测到PPB水平。在最佳的实验条件下,传感器显示出宽线性动态范围为0.041至12.4μm。使用10分钟的前浓度时间,发达传感器的较低检测限为0.037μm(8.90ppb)。传感器对其他干涉离子的铝(III)离子表示出色的选择性。

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