Scinovex
reviewTop 1% cited

Environmental Transformations of Silver Nanoparticles: Impact on Stability and Toxicity

Environmental Science & Technology · 2012 · Vol. 46(13) · pp. 6900–6914
Clément LevardErnest M. HotzeGregory V. LowryGordon E. Brown

Abstract

Silver nanoparticles (Ag-NPs) readily transform in the environment, which modifies their properties and alters their transport, fate, and toxicity. It is essential to consider such transformations when assessing the potential environmental impact of Ag-NPs. This review discusses the major transformation processes of Ag-NPs in various aqueous environments, particularly transformations of the metallic Ag cores caused by reactions with (in)organic ligands, and the effects of such transformations on physical and chemical stability and toxicity. Thermodynamic arguments are used to predict what forms of oxidized silver will predominate in various environmental scenarios. Silver binds strongly to sulfur (both organic and inorganic) in natural systems (fresh and sea waters) as well as in wastewater treatment plants, where most Ag-NPs are expected to be concentrated and then released. Sulfidation of Ag-NPs results in a significant decrease in their toxicity due to the lower solubility of silver sulfide, potentially limiting their short-term environmental impact. This review also discusses some of the major unanswered questions about Ag-NPs, which, when answered, will improve predictions about their potential environmental impacts. Research needed to address these questions includes fundamental molecular-level studies of Ag-NPs and their transformation products, particularly Ag(2)S-NPs, in simplified model systems containing common (in)organic ligands, as well as under more realistic environmental conditions using microcosm/mesocosm-type experiments. Toxicology studies of Ag-NP transformation products, including different states of aggregation and sulfidation, are also required. In addition, there is the need to characterize the surface structures, compositions, and morphologies of Ag-NPs and Ag(2)S-NPs to the extent possible because they control properties such as solubility and reactivity.

Nanoparticles: synthesis and applicationsHealthcare and Environmental Waste ManagementSulfidationEcotoxicityEnvironmental chemistryMesocosmChemistrySilver nanoparticleSolubilityMetalEnvironmental toxicologyMicrocosm

MeSH terms

AnimalsEnvironmentEnvironmental PollutantsHumansSilverSulfidesThermodynamicsNanoparticles

Funding

  • National Science Foundation
Citations
1,472
FWCI
56.30
field-weighted impact
References
164
Percentile
100%
vs. same field & year
Citations per year
Cited by
The medical applications of silver nanoparticles
International Journal of Pharmacognosy and Life Science · 2022 · 1 citations
Water Analysis: Emerging Contaminants and Current Issues
Analytical Chemistry · 2014 · 2,135 citations
Nanoparticles in the aquatic environment: Usage, properties, transformation and toxicity—A review
Process Safety and Environmental Protection · 2019 · 313 citations
Nanotechnology in agriculture: Current status, challenges and future opportunities
The Science of The Total Environment · 2020 · 1,078 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.