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Reaction Mechanisms of H2S Oxidation by Naphthoquinones

机译:萘醌氧化 H2S 的反应机理

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摘要

1,4-naphthoquinones (NQs) catalytically oxidize H2S to per- and polysufides and sulfoxides, reduce oxygen to superoxide and hydrogen peroxide, and can form NQ-SH adducts through Michael addition. Here, we measured oxygen consumption and used sulfur-specific fluorophores, liquid chromatography tandem mass spectrometry (LC-MS/MS), and UV-Vis spectrometry to examine H2S oxidation by NQs with various substituent groups. In general, the order of H2S oxidization was DCNQ ~ juglone > 1,4-NQ > plumbagin >DMNQ ~ 2-MNQ > menadione, although this order varied somewhat depending on the experimental conditions. DMNQ does not form adducts with GSH or cysteine (Cys), yet it readily oxidizes H2S to polysulfides and sulfoxides. This suggests that H2S oxidation occurs at the carbonyl moiety and not at the quinoid 2 or 3 carbons, although the latter cannot be ruled out. We found little evidence from oxygen consumption studies or LC-MS/MS that NQs directly oxidize H2S2–4, and we propose that apparent reactions of NQs with inorganic polysulfides are due to H2S impurities in the polysulfides or an equilibrium between H2S and H2Sn. Collectively, NQ oxidation of H2S forms a variety of products that include hydropersulfides, hydropolysulfides, sulfenylpolysulfides, sulfite, and thiosulfate, and some of these reactions may proceed until an insoluble S8 colloid is formed.
机译:1,4-萘醌 (NQ) 催化 H2S 氧化为全硫化物和多硫化物以及亚砜,将氧还原为超氧化物和过氧化氢,并可通过 Michael 加成形成 NQ-SH 加合物。在这里,我们测量了耗氧量,并使用硫特异性荧光团、液相色谱串联质谱法 (LC-MS/MS) 和紫外-可见光谱法来检查具有各种取代基的 NQ 对 H2S 的氧化。一般来说,H2S 氧化的顺序是 DCNQ ~ juglone > 1,4-NQ > plumbagin >DMNQ ~ 2-MNQ > 甲萘醌,尽管这个顺序根据实验条件的不同而有所不同。DMNQ 不与 GSH 或半胱氨酸 (Cys) 形成加合物,但它很容易将 H2S 氧化成多硫化物和亚砜。这表明 H2S 氧化发生在羰基部分,而不是喹状体 2 或 3 个碳,尽管不能排除后者。我们从耗氧研究或 LC-MS/MS 中发现的证据表明 NQ 直接氧化 H2S2-4,我们提出 NQ 与无机多硫化物的明显反应是由于多硫化物中的 H2S 杂质或 H2S 和 H2Sn 之间的平衡。总的来说,H2S 的 NQ 氧化形成多种产物,包括氢过硫化物、 氢多硫化物、亚磺酰多硫化物、亚硫酸盐和硫代硫酸盐,其中一些反应可能会进行,直到形成不溶性 S8 胶体。

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