4.7 Article

Ultrasensitive and highly selective detection of nickel ion by two novel optical sensors

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ANALYTICAL AND BIOANALYTICAL CHEMISTRY
卷 415, 期 23, 页码 5695-5707

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SPRINGER HEIDELBERG
DOI: 10.1007/s00216-023-04845-x

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Optical sensor; Azo dyes; Nickel determination; Plasticized poly vinylchloride membrane; Colorimetry; Environmental analysis

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Novel optical sensors incorporating 5-(2`-bromo-phenylazo)-6-hydroxypyrimidine-2,4-dione (I), 5-(2`,4`-dimethylphenylazo)-6-hydroxypyrimidine-2,4-dione (II), dibutylphthalate (DBP) and sodium tetra-phenylborate (Na-TPB) were developed for nickel determination. The addition of DBP greatly enhanced the performance of both ionophores I and II as chromo ionophores. The sensors exhibited excellent stability, reproducibility, long lifespan, and high selectivity for Ni2+ detection.
Novel optical sensors for nickel determination by incorporation of 5-(2`-bromo-phenylazo)-6-hydroxypyrimidine-2,4-dione (I), 5-(2`,4`-dimethylphenylazo)-6-hydroxypyrimidine-2,4-dione (II), dibutylphthalate (DBP) and sodium tetra-phenylborate (Na-TPB) to the plasticized polyvinyl chloride matrices were prepared. The introduction of DBP in the membrane substantially increased the ability of both ionophores I and II to function as chromo ionophores. The advantages of the reported sensors include great stability, reproducibility, and relatively long lifespan, as well as excellent selectivity for Ni2+ ion detection across a wide range of alkali, alkaline earth, transition, and heavy metal ions.Under optimized membrane compositions and experimental parameters, the response of both sensors was linear throughout a concentration range of 3.5 x 10(-8) to 8.1 x 10(-5) and 2.0 x 10(-8) to 5.1 x 10(-5) M for I and II, respectively. Sensor detection and quantification limits based on the definition that the concentration of the sample leads to a signal equal to the blank signal plus three and ten times its standard deviation were determined to be 1.15 x 10(-8) and 3.45 x 10(-8) M when utilizing I, whereas they were 0.61 x 10(-8) and 1.95 x 10(-8) M when utilizing II, respectively. The reaction time of optodes is defined as the period required achieving 95% of based sensors and found to be 8.0 and 5.0 min using I and II, respectively. Ni2+ ion concentrations in water, food, and environmental samples were effectively determined using the proposed optical sensors.

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