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A nano-nickel electrochemical sensor for sensitive determination of chemical oxygen demand

机译:一种用于化学需氧量灵敏测定的纳米镍电化学传感器

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Nano-nickel particles (nano-Ni) were electrodeposited on the surface of a glassy carbon (GC) electrode under ?0.9 V for 25 min, and then used to construct an electrochemical sensor for sensitive determination of chemical oxygen demand (COD). The parameters such as electrolyte, deposition potential, deposition time and surface morphology were investigated. It was shown that nano-Ni film with high electrocatalytic activity was stably modified on the surface of the GC electrode, which could be used to effectively oxidize a wide spectrum of organic compounds. Under optimized conditions, the linear range was 10–1533 mg L?1 and the detection limit was as low as 1.1 mg L?1. Subsequently, this sensor was used to detect the COD values of different water samples and the results were linearly correlated to those by the classic dichromate method (R = 0.9493, p 0.01, n = 54). This confirmed the reliability and practicality of the proposed method in the determination of COD in various water samples...
机译:纳米镍颗粒(纳米镍)在约0.9 V下电沉积在玻璃碳电极上25分钟,然后用于构建用于敏感测定化学需氧量(COD)的电化学传感器。研究了电解质,沉积电势,沉积时间和表面形态等参数。结果表明,具有高电催化活性的纳米镍膜在GC电极表面被稳定修饰,可用于有效氧化多种有机化合物。在最佳条件下,线性范围为10–1533 mg L?1,检出限低至1.1 mg L?1。随后,该传感器用于检测不同水样的COD值,其结果与经典重铬酸盐法线性相关(R = 0.9493,p <0.01,n = 54)。这证实了该方法在各种水样中化学需氧量测定中的可靠性和实用性...

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