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Fluorometric appraisal of HSO4- in aqueous media and daily utilities using organic-inorganic nanohybrids

机译:使用有机-无机纳米杂化物对含水介质中HSO4-的荧光分析及日常使用

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摘要

Receptor 1 based on rhodamine dye was designed and characterized using H-1, C-13 NMR and mass spectroscopy like spectroscopic techniques. Re-precipitation methods have been used for developing nano-aggregates of 1 (N1) in aqueous medium, which were further used for preparation of inorganic-organic hybrid nanomaterial (H1) i.e. by coating organic nanoparticles with gold nanoparticles. Changes in the photophysical profile by anion binding of N1 and H1 were evaluated using fluorescence spectroscopy. No selectivity was perceived with nano-aggregates (N1) for any anion. However, the hybrid nanomaterial (H1) selectively recognized HSO4- through enhancement of fluorescence emission intensity in aqueous medium. Thus, the hybrid nanomaterial (H1) has been established for sensing of HSO4- and was considered for various parameters like rapid response, good stability in water and is validated for determination of HSO4- ions in daily use items.
机译:设计了基于若丹明染料的受体1,并使用H-1,C-13 NMR和质谱法(如光谱技术)对其进行了表征。已经使用再沉淀方法在水性介质中显影1(N1)的纳米聚集体,然后将其进一步用于制备无机-有机杂化纳米材料(H1),即通过用金纳米颗粒涂覆有机纳米颗粒。使用荧光光谱法评估通过N1和H1的阴离子结合而引起的光物理轮廓变化。纳米聚集体(N1)对任何阴离子都没有选择性。但是,杂化纳米材料(H1)通过增强水性介质中的荧光发射强度来选择性识别HSO4-。因此,已经建立了用于检测HSO4-的杂化纳米材料(H1),并考虑了各种参数,如快速响应,在水中具有良好的稳定性,并已被证实可用于测定日常使用物品中的HSO4-离子。

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