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首页> 外文期刊>Chemistry: A European journal >Fluorescent probes for Pd~(2+) detection by allylidene-hydrazone ligands with excellent selectivity and large fluorescence enhancement
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Fluorescent probes for Pd~(2+) detection by allylidene-hydrazone ligands with excellent selectivity and large fluorescence enhancement

机译:烯丙基-配体检测Pd〜(2+)的荧光探针,具有出色的选择性和较大的荧光增强

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摘要

Because palladium is widely used in various catalysts and converters, which results in a high level of contamination of water systems and the soil by residual palladium, there is an urgent need for Pd~(2+)-sensitive and -selective probes. Based on the special affinity of Pd~(2+) to conjugated double-bond ligands, two fluorescence probes (RPd2 and RPd3) that contain conjugated allylidene-hydrazone ligands that link to colorless rhodamine-spirolactam have been developed. The results show that conjugated allylidene-hydrazones have a much better affinity toward Pd~(2+), and consequently provide the probes with more acute color change and fluorescence enhancement (≈170-fold), and better selectivity over other metal ions (especially platinum-group elements, or PGEs) than the unconjugated allyl-hydrazine. With richer electron density and a more suitable stereo effect in the allylidene-hydrazone group, RPd2 displays the best specificity toward Pd~(2+) and affords convenient detection by the naked eye. Its potential application for Pd~(2+)-contaminated water and soil-sample analysis is revealed by proof-of-concept experiments. Sensitive and selective: Two fluorescent probes for Pd~(2+) have been developed. The results show that conjugated allylidene-hydrazone has much better affinity toward Pd ~(2+), and consequently better selectivity over other metal ions (especially platinum-group elements) than the unconjugated allyl-hydrazine (see graphic).
机译:由于钯广泛用于各种催化剂和转化器中,导致残留钯对水系统和土壤的高度污染,因此迫切需要对Pd〜(2+)敏感和选择性的探针。基于Pd〜(2+)对共轭双键配体的特殊亲和力,已开发出两个荧光探针(RPd2和RPd3),它们包含与无色罗丹明-螺内酰胺连接的共轭亚烷基-配体。结果表明,共轭亚烷基hydr具有与Pd〜(2+)更好的亲和力,因此为探针提供了更敏锐的颜色变化和荧光增强(约170倍),以及比其他金属离子更好的选择性(尤其是铂族元素或PGEs)。 RPd2具有更高的电子密度和更适合的亚芳基hydr基团立体效应,对Pd〜(2+)表现出最佳的特异性,并可以通过肉眼方便地检测到。概念验证实验证明了其在受Pd〜(2+)污染的水和土壤样品分析中的潜在应用。灵敏且选择性:已开发出两种用于Pd〜(2+)的荧光探针。结果表明,共轭烯丙基-对Pd〜(2+)具有更好的亲和力,因此与未共轭烯丙基肼相比,对其他金属离子(尤其是铂族元素)的选择性更好。

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