首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Fabrication of novel chemosensors composed of rhodamine derivative for the detection of ferric ion and mechanism studies on the interaction between sensor and ferric ion
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Fabrication of novel chemosensors composed of rhodamine derivative for the detection of ferric ion and mechanism studies on the interaction between sensor and ferric ion

机译:由若丹明衍生物组成的新型化学传感器的制备及其对铁离子的检测及其与铁离子相互作用机理的研究

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Although many rhodamine based fluorescence sensors were reported to detect metal ions with high sensitivity and selectivity, there are very few reports available to study the mechanisms of detection and the interaction between probe and metal ions. This paper aims to detect ferric ions by novel fluorescence chemosensors and study the mechanisms in detail. A novel probe AD-MAH-RhB was designed and synthesized from rhodamine B (RhB), adamantyl (AD), ethylene diamine and maleic anhydride (MAH). AD-MAH-RhB could detect Fe3+ in aqueous solutions. The mechanism was explored by the HSAB principle, FTIR and mass spectra. The results suggested that Fe3+ bound with amine and oxygen atoms in AD-MAH-RhB to form a complex composed of a 2 : 1 stoichiometry of Fe3+ and the probe. Moreover, computational simulations were employed to further investigate the detection mechanism. The calculated results showed that Fe3+ could conjugate with AD-MAH-RhB probe to form a stable complex, which was induced by synergetic effects of the suitable space and distance of van der Waals forces. However, Hg2+ was found to disturb this detection and form a complex with 1 : 2 stoichiometry of Hg2+ and AD-MAH-RhB. Then, another probe, beta-cyclodextrin modified polymaleic anhydride (PMAH-CD) including AD-MAH-RhB (PMAH-CD/AD-MAH-RhB) was fabricated by inclusion interaction between CD and AD. PMAH-CD@AD-MAH-RhB showed high selectivity and sensitivity to Fe3+ in the aqueous solution by eliminating the interruption of Hg2+ possibly due to the high hydrogen interaction among the probes to inhibit the stable form complex with Hg2+.
机译:尽管据报道许多基于罗丹明的荧光传感器可高灵敏度和高选择性地检测金属离子,但很少有报道可用于研究检测机理以及探针与金属离子之间的相互作用。本文旨在通过新型荧光化学传感器检测三价铁离子,并详细研究其机理。从罗丹明B(RhB),金刚烷基(AD),乙二胺和马来酸酐(MAH)设计并合成了新型探针AD-MAH-RhB。 AD-MAH-RhB可以检测水溶液中的Fe3 +。通过HSAB原理,FTIR和质谱研究了该机理。结果表明Fe3 +与AD-MAH-RhB中的胺和氧原子结合,形成由Fe3 +和探针的化学计量比为2:1组成的配合物。此外,计算机模拟被用来进一步研究检测机制。计算结果表明,Fe3 +可以与AD-MAH-RhB探针结合形成稳定的络合物,这是由于范德华力的合适空间和距离的协同效应所致。但是,发现Hg2 +干扰了该检测,并与Hg2 +和AD-MAH-RhB的化学计量比为1:2形成复合物。然后,通过CD和AD之间的包含相互作用,制备了另一种探针,包括AD-MAH-RhB的β-环糊精修饰的聚马来酸酐(PMAH-CD)(PMAH-CD / AD-MAH-RhB)。 PMAH-CD @ AD-MAH-RhB通过消除Hg2 +的中断而显示出对水溶液中Fe3 +的高选择性和敏感性,这可能是由于探针之间的高氢相互作用抑制了与Hg2 +形成的稳定形态配合物。

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