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A cost-effective and practical polybenzanthrone-based fluorescent sensor for efficient determination of palladium (II) ion and its application in agricultural crops and environment

机译:一种经济实用的基于聚苯并蒽醌的荧光传感器,可有效测定钯(II)离子及其在农作物和环境中的应用

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摘要

A highly selective and sensitive fluorescent chemosensor suitable for practical measurement of palladium ion (Pd~(2+)) in agricultural crops and environment samples has been successfully fabricated using polybenzanthrone (PBA). PBA was facilely electrosynthesized in the mixed electrolyte of acetonitrile and boron trifluoride diethyl etherate. The fluorescence intensity of PBA showed a linear response to Pd2* in the concentration range of 5 nM-0.12 mM with a detection limit of 0.277 nM and quantification limit of 0.925 nM. Different compounds existing in agricultural crops and environment such as common metal ions, anions, natural amino acids, carbohydrates, and organic acids were used to examine the selectivity of the as-fabricated sensor, and no obvious fluorescence change could be observed in these interferents and their mixtures. A possible mechanism was proposed that the coordination of PBA and Pd~(2+) enhance the aggregation of polymer chains, which led to a significant quenching of PBA emission, and this was further confirmed by absorption spectra monitoring and transmission electron microscopy. The excellent performance of the proposed sensor and satisfactory results of the Pd~(2+) determination in practical samples suggested that the PBA-based fluorescent sensor for the determination of Pd~(2+) will be a good candidate for application in agriculture and environment.
机译:使用聚苯并蒽醌(PBA)成功地制备了一种适用于农业作物和环境样品中钯离子(Pd〜(2+))的实际测量的高选择性和灵敏的荧光化学传感器。在乙腈和三氟化硼二乙基醚化物的混合电解质中可以轻松地电合成PBA。 PBA的荧光强度在5 nM-0.12 mM的浓度范围内对Pd2 *呈线性响应,检出限为0.277 nM,定量限为0.925 nM。使用农作物和环境中存在的不同化合物(例如,常见的金属离子,阴离子,天然氨基酸,碳水化合物和有机酸)来检测制成的传感器的选择性,并且在这些干扰物中并没有观察到明显的荧光变化。他们的混合物。提出了一种可能的机制,即PBA和Pd〜(2+)的配位促进了聚合物链的聚集,从而导致了PBA发射的显着猝灭,并通过吸收光谱监测和透射电子显微镜进一步证实了这一点。所提出的传感器的优异性能和实际样品中Pd〜(2+)测定的令人满意的结果表明,用于Pd〜(2+)测定的基于PBA的荧光传感器将是农业和农业应用的良好候选者。环境。

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