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硬度对柠檬酸钠稳定的金纳米颗粒稳定性及其被大型溞摄取的影响。

The effect of hardness on the stability of citrate-stabilized gold nanoparticles and their uptake by Daphnia magna.

机构信息

Department of Chemistry and Geochemistry, Colorado School of Mines, Golden, CO 80401, USA.

出版信息

J Hazard Mater. 2012 Apr 30;213-214:434-9. doi: 10.1016/j.jhazmat.2012.02.025. Epub 2012 Feb 16.

Abstract

The stability and uptake by Daphnia magna of citrate-stabilized gold nanoparticles (AuNPs) in three different hardness-adjusted synthetic waters were investigated. Negatively charged AuNPs were found to aggregate and settle in synthetic waters within 24 h. Sedimentation rates depended on initial particle concentrations of 0.02, 0.04, and 0.08 nM AuNPs. Hardness of the synthetic waters affected the aggregation of AuNPs and is explained by the compression of diffuse double layer of AuNPs due to the increasing ionic strength. The fractal dimension of AuNPs in the reaction-limited regime of synthetic waters averaged 2.228±0.126 implying the rigid structures of aggregates driven by the collision of small particles with the growing aggregates. Four-day old D. magna accumulated more than 90% of AuNPs in 0.04 nM AuNP suspensions without any observed mortality. Exposure to pre-aggregated AuNP for 48 h in hard water did not show any significant difference in uptake, suggesting D. magna can also ingest settled AuNP aggregates. D. magna exposed to AuNPs shed their exoskeleton whereas the control did not generate any molts over 48 h. This implies that D. magna removed AuNPs on their exoskeleton by producing molts to decrease any adverse effects of adhered AuNPs.

摘要

研究了在三种不同硬度调节的合成水中,戴芬达(Daphnia magna)对柠檬酸稳定的金纳米粒子(AuNPs)的稳定性和摄取。发现带负电荷的 AuNPs 在 24 小时内聚集并沉降在合成水中。沉降速率取决于初始 AuNPs 浓度为 0.02、0.04 和 0.08 nM。合成水的硬度影响 AuNPs 的聚集,并可通过 AuNPs 扩散双电层的压缩来解释,这是由于离子强度的增加导致的。在合成水的反应限制区,AuNPs 的分形维数平均为 2.228±0.126,这意味着由小颗粒与不断增长的聚集体的碰撞驱动的聚集体具有刚性结构。在 0.04 nM 的 AuNP 悬浮液中,四天大的 D. magna 积累了超过 90%的 AuNPs,而没有观察到任何死亡。在硬水中暴露于预聚集的 AuNP 48 小时内,摄取没有显示出任何显著差异,这表明 D. magna 也可以摄取沉降的 AuNP 聚集体。暴露于 AuNPs 的 D. magna 会脱落外骨骼,而对照组在 48 小时内不会产生任何蜕皮。这意味着 D. magna 通过蜕皮去除外骨骼上的 AuNPs,以减少附着的 AuNPs 的任何不利影响。

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