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Silver nanoparticles in complex media: an easy procedure to discriminate between metallic silver nanoparticles, reprecipitated silver chloride, and dissolved silver species

机译:复杂介质中的银纳米颗粒:区分金属银纳米颗粒,再沉淀的氯化银和溶解的银物质的简便程序

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Silver nanoparticles undergo oxidative dissolution in water upon storage. This occurs in pure water as well as in more complex media, including natural environments, biological tissues, and cell culture media. However, the dissolution leads to the reprecipitation of silver chloride as chloride is present in almost all relevant environments. The discrimination between dissolved silver species (ions and silver complexes) and dispersed (solid) species does not take this into account because all solid species (metallic silver and silver chloride) are isolated together. By applying a chemical separation procedure, we show that it is possible to quantify silver, silver chloride, and dissolved silver species after immersion into a typical cell culture medium (DMEM + 10% FCS). During the dissolution of metallic silver nanoparticles, about half of the dissolved silver is reprecipitated as solid silver chloride, i.e. the mere analysis of the soluble silver species does not reflect the true situation. The separation protocol is suitable for all chloride-containing media in the presence or in the absence of biomolecules.
机译:银纳米颗粒在储存时会在水中发生氧化溶解。这发生在纯水以及更复杂的介质中,包括自然环境,生物组织和细胞培养基。然而,溶解会导致氯化银再沉淀,因为几乎所有相关环境中都存在氯化物。溶解的银物质(离子和银络合物)和分散的(固体)物质之间的区别没有考虑到这一点,因为所有固体物质(金属银和氯化银)都被隔离在一起。通过应用化学分离程序,我们显示了浸入典型细胞培养基(DMEM + 10%FCS)后,有可能对银,氯化银和溶解的银进行定量。在金属银纳米颗粒的溶解过程中,约有一半的溶解银会以固体氯化银的形式再沉淀,即仅对可溶性银物质进行分析并不能反映真实情况。分离方案适用于存在或不存在生物分子的所有含氯介质。

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