首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Fluorescence study of the interaction of Suwannee River fulvic acid with metal ions and Al3+-metal ion competition
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Fluorescence study of the interaction of Suwannee River fulvic acid with metal ions and Al3+-metal ion competition

机译:Suwannee河黄腐酸与金属离子相互作用和Al3 +-金属离子竞争的荧光研究

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In this study emission and synchronous-scan fluorescence spectroscopy have been used to investigate the interaction of the class A (oxygen seeking 'hard acid') metal Al(3+), with Suwannee River fulvic acid (SRFA), as well as competition between Al(3+) and several other metal ions (Ca(2+), Mg(2+), Cu(2+), Pd(2+), La(3+), Tb(3+) and Fe(3+)) for binding sites on SRFA. Of the four metal ions possessing very similar (and relatively low) ionic indices (Ca(2+), Mg(2+), Cu(2+) and Pd(2+)) only the latter two paramagnetic ions significantly quenched SRFA fluorescence emission intensity. Of the four metal ions possessing very similar (and relatively low) covalent indices (Ca(2+), Mg(2+), La(3+) and Tb(3+)) only the last paramagnetic ion (Tb(3+)) significantly quenched SRFA fluorescence. None of these metals was able to significantly compete with SRFA-bound Al(3+).Fe(3+), which differs substantially from all of the other metals examined in this study in that it possesses a relatively high ionic index (but not as high as Al(3+)) and a relatively low covalent index (but not as low as Al(3+)), was able not only to quench SRFA fluorescence but also to compete (at least to some extent) with SRFA-bound Al(3+). Synchronous-scan fluorescence SRFA spectra taken in the absence and presence of Fe(3+) and/or Al(3+) support the view that these two metal ions can compete for sites on SRFA. The results of these fluorescence experiments further confirm the Al(3+), and metal ions that have electronic properties somewhat similar to Al(3+) (such as Fe(3+)) are somewhat unique in their ability to interact strongly with binding sites on fulvic acids.
机译:在这项研究中,发射和同步扫描荧光光谱已用于研究A类(寻求“硬酸”的氧气)金属Al(3+)与Suwannee River富里酸(SRFA)的相互作用,以及Al(3+)和其他几种金属离子(Ca(2 +),Mg(2 +),Cu(2 +),Pd(2 +),La(3 +),Tb(3+)和Fe(3 +))用于SRFA上的结合位点。在具有非常相似(且相对较低)的离子指数(Ca(2 +),Mg(2 +),Cu(2+)和Pd(2+))的四个金属离子中,仅后两个顺磁性离子显着淬灭了SRFA荧光发射强度。在具有非常相似(且相对较低)共价指数(Ca(2 +),Mg(2 +),La(3+)和Tb(3+))的四个金属离子中,只有最后一个顺磁离子(Tb(3+ ))SRFA荧光显着淬灭。这些金属均不能与SRFA结合的Al(3 +)。Fe(3+)显着竞争,该金属与本研究中检测的所有其他金属有很大不同,因为它具有较高的离子指数(但没有高达Al(3+))和较低的共价指数(但不低于Al(3+)),不仅能够淬灭SRFA荧光,而且能够(至少在某种程度上)与SRFA-竞争结合Al(3+)。在不存在和存在Fe(3+)和/或Al(3+)的情况下获取的同步扫描荧光SRFA光谱支持以下观点:这两种金属离子可以竞争SRFA上的位点。这些荧光实验的结果进一步证实了Al(3+),具有与Al(3+)相似的电子特性的金属离子(例如Fe(3+))在与结合力强烈相互作用的能力方面有些独特黄腐酸上的位点。

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