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测量天然样品中可溶性 Mn(III)物种的挑战。

Challenges of Measuring Soluble Mn(III) Species in Natural Samples.

机构信息

Department of Emerging Materials Science, Daegu Gyeongbuk Institute of Science and Technology, Daegu 42988, Korea.

Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Molecules. 2022 Mar 3;27(5):1661. doi: 10.3390/molecules27051661.

Abstract

Soluble Mn(III)-L complexes appear to constitute a substantial portion of manganese (Mn) in many environments and serve as critical high-potential species for biogeochemical processes. However, the inherent reactivity and lability of these complexes-the same chemical characteristics that make them uniquely important in biogeochemistry-also make them incredibly difficult to measure. Here we present experimental results demonstrating the limits of common analytical methods used to quantify these complexes. The leucoberbelin-blue method is extremely useful for detecting many high-valent Mn species, but it is incompatible with the subset of Mn(III) complexes that rapidly decompose under low-pH conditions-a methodological requirement for the assay. The Cd-porphyrin method works well for measuring Mn(II) species, but it does not work for measuring Mn(III) species, because additional chemistry occurs that is inconsistent with the proposed reaction mechanism. In both cases, the behavior of Mn(III) species in these methods ultimately stems from inter- and intramolecular redox chemistry that curtails the use of these approaches as a reflection of ligand-binding strength. With growing appreciation for the importance of high-valent Mn species and their cycling in the environment, these results underscore the need for additional method development to enable quantifying such species rapidly and accurately in nature.

摘要

可溶性 Mn(III)-L 配合物似乎构成了许多环境中锰 (Mn) 的重要组成部分,并且是生物地球化学过程中关键的高电位物种。然而,这些配合物的固有反应性和不稳定性——使它们在生物地球化学中具有独特重要性的相同化学特征——也使它们极难测量。在这里,我们展示了实验结果,这些结果表明了用于定量这些配合物的常用分析方法的局限性。隐色孔雀绿蓝法对于检测许多高价 Mn 物种非常有用,但它与在低 pH 条件下迅速分解的 Mn(III)配合物子集不兼容——这是该测定的方法要求。Cd-卟啉法非常适用于测量 Mn(II)物种,但不适用于测量 Mn(III)物种,因为会发生与所提出的反应机制不一致的额外化学变化。在这两种情况下,这些方法中 Mn(III)物种的行为最终源于分子内和分子间氧化还原化学,这限制了这些方法作为配体结合强度反映的应用。随着对高价 Mn 物种及其在环境中循环的重要性的认识不断提高,这些结果强调了需要开发额外的方法来快速准确地在自然界中定量这些物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cbe/8911613/26891b58509b/molecules-27-01661-g001.jpg

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