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Formation of Nanosilver from Silver Sulfide Nanoparticles in Natural Waters by Photoinduced Fe(II, III) Redox Cycling

机译:通过光诱导的Fe(II,III)氧化还原循环从天然水中的硫化银纳米颗粒形成纳米银

摘要

Nanosilver (nAg) has been repeatedly demonstrated to end up as silver sulfide nanoparticles (Ag(2)SNPs), but little is known about the potential transformations of Ag(2)SNPs in natural environments that are very important for comprehensive assessments of nAg risks to human and environmental health. Here we show that Ag(2)SNPs can release tiny amounts of silver ion via cation exchange reactions between Ag(I) and Fe(III) in the dark, while in the light dramatic dissolution of Ag2SNP occurs, which is mainly attributed to the Ag2SNP oxidation by the hydroxyl radical formed during the reduction of Fe(III) to Fe(II) in water under sunlit conditions. However, silver ions are subsequently reduced to nAg in the light due to the strong reducing power of Fe(II). Thus, the formation of nAg from Ag(2)SNPs in the presence of Fe(III) under light conditions proceeds through a two-step reaction mechanism, the photoinduced and Fe(III)-dependent dissolution of Ag(2)SNPs, followed by the reduction of silver ions to nAg by Fe(II). The formation of nAg from Ag(2)SNPs is also validated in environmental waters under light conditions. It is thus concluded that photoinduced Fe(III)/Fe(II) redox cycling can drive the formation of nAg from Ag(2)SNPs in natural waters. These findings suggest that the previous consensus about the stability of Ag(2)SNPs in aquatic environments should be reconsidered.
机译:纳米银(nAg)反复被证明最终会变成硫化银纳米颗粒(Ag(2)SNPs),但人们对Ag(2)SNPs在自然环境中的潜在转变知之甚少,这对于全面评估nAg风险非常重要对人类和环境健康。在这里我们表明,Ag(2)SNPs可以通过在黑暗中Ag(I)和Fe(III)之间的阳离子交换反应释放少量的银离子,而在光照下,Ag2SNP会发生剧烈溶解,这主要归因于Ag2SNP被阳光照射条件下的水中Fe(III)还原为Fe(II)时形成的羟基自由基氧化。但是,由于Fe(II)的强大还原能力,银离子随后在光下被还原为nAg。因此,在光照条件下,在存在Fe(III)的条件下,由Ag(2)SNPs形成nAg的过程通过两步反应机理进行,即Ag(2)SNPs的光诱导和Fe(III)依赖性溶解,然后通过Fe(II)将银离子还原为nAg。由Ag(2)SNPs形成的nAg也已在光照条件下的环境水中得到验证。因此得出结论,光诱导的Fe(III)/ Fe(II)氧化还原循环可以驱动自然水中的Ag(2)SNPs形成nAg。这些发现表明,应该重新考虑先前关于Ag(2)SNP在水生环境中的稳定性的共识。

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