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Aggregation-Dependent Oxidation of Metal Nanoparticles
Journal of the American Chemical Society, 2017Here we describe the effect of aggregation on the oxidation of citrate-stabilized Au nanoparticles (NPs) attached electrostatically to amine-functionalized glass/ITO electrodes. When the Au NPs are attached to the electrode from a solution with pH greater than ∼3.0, they are well-separated on the electrode and oxidize in bromide-containing electrolyte ...
Stacy L. Allen +2 more
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Metal oxide nanoparticles with low toxicity
Journal of Photochemistry and Photobiology B: Biology, 2015A number of different nanomaterials produced and incorporated into various products are rising. However, their environmental hazards are frequently unknown. Here we consider three different metal oxide compounds (SnO2, In2O3, and Al2O3), which have not been extensively studied and are expected to have low toxicity.
Djurisic, A +11 more
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Peptide binding to metal oxide nanoparticles
Faraday Discussions, 2017Magnetic metal oxide nanoparticles demonstrate great applicability in several fields such as biotechnology, medicine and catalysis. A stable, magnetic and low-cost material, nanoscale magnetite, is an interesting adsorbent for protein purification.
S. P. Schwaminger +4 more
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Metal and Metal Oxide Nanoparticles
Cancer is one of the most pressing global health challenges. Despite significant advancements in conventional therapies, mortality rates for some cancers are still high. Key barriers, such as multidrug resistance, tumor heterogeneity, non-specific targeting, toxicity, and late-stage diagnosis, limit the efficacy of existing therapies.Radhakrishnan E K +2 more
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Neurotoxicity and mechanism of metal and metal oxide nanoparticles
Chemico-Biological InteractionsMetal and metal oxide nanoparticles, owing to their unique physicochemical properties, have been extensively applied in biomedicine, cell labeling and sorting, drug delivery, and clinical therapy. Their impact on human health and environmental safety is increasingly drawing attention.
Shouying, Cao, Meng, Tang, Changcun, Bai
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Toxicity of Metal Oxide Nanoparticles
2018In the recent times, nanomaterials are used in many sectors of science, medicine and industry, without revealing its toxic effects. Thus, it is in urgent need for exploring the toxicity along with the application of such useful nanomaterials. Nanomaterials are categorized with a particle size of 1-100 nm.
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Nanotoxicity: Oxidative Stress Mediated Toxicity of Metal and Metal Oxide Nanoparticles
Journal of Nanoscience and Nanotechnology, 2014Metal and metal oxide nanoparticles are often used as industrial catalysts or to improve product's functional properties. Recent advanced nanotechnology have been expected to be used in various fields, ranging from sensors, environmental remediation to biomedicine, medical biology and imaging, etc.
Abhijit, Sarkar +2 more
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Dissolution of metal and metal oxide nanoparticles in aqueous media
Environmental Pollution, 2014The dissolution of Ag (citrate, gelatin, polyvinylpyrrolidone and chitosan coated), ZnO, CuO and carbon coated Cu nanoparticles (with two nominal sizes each) has been studied in artificial aqueous media, similar in chemistry to environmental waters, for up to 19 days.
Niksa Odzak +3 more
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Green synthesis of metal oxide nanoparticles
Lomonosov chemistry journalActive development of nanotechnology and growing demand for nanomaterials, including metal oxide nanoparticles, makes the problem of developing economical and environmentally friendly synthesis methods urgent. Green chemistry and green synthesis methods based on its principles are an effective solution to this problem.
T. I. Shabatina +4 more
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Metal nanoparticle catalysts decorated with metal oxide clusters
Chemical Communications, 2012Au nanoparticles decorated with mononuclear Ti-oxo units dispersed in silica clusters were formed by activating Au nanoparticles (~2 nm) stabilized with Ti- and amine-functionalized siloxane oligomers. These Au nanoparticles were active catalysts for selective oxidation of propane to acetone, and the activity increased with increasing Ti density.
Neema A, Mashayekhi +3 more
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