Search alternatives:
mg decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
c decrease » c decreased (Expand Search), _ decrease (Expand Search), a decrease (Expand Search)
50 c » 5 c (Expand Search), 50 μ (Expand Search), 50 _ (Expand Search)
5 mg » 5 mm (Expand Search)
mg decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
c decrease » c decreased (Expand Search), _ decrease (Expand Search), a decrease (Expand Search)
50 c » 5 c (Expand Search), 50 μ (Expand Search), 50 _ (Expand Search)
5 mg » 5 mm (Expand Search)
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Stability of Plasmonic Mg-MgO Core–Shell Nanoparticles in Gas-Phase Oxidative Environments
Published 2024“…Furthermore, we show that the reactivity of Mg-MgO nanoplates with water vapor (3.5 vol % in N<sub>2</sub>) decreases with temperature, with no oxidation of the Mg core detected from 200 to 400 °C. …”
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Stability of Plasmonic Mg-MgO Core–Shell Nanoparticles in Gas-Phase Oxidative Environments
Published 2024“…Furthermore, we show that the reactivity of Mg-MgO nanoplates with water vapor (3.5 vol % in N<sub>2</sub>) decreases with temperature, with no oxidation of the Mg core detected from 200 to 400 °C. …”
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69
Stability of Plasmonic Mg-MgO Core–Shell Nanoparticles in Gas-Phase Oxidative Environments
Published 2024“…Furthermore, we show that the reactivity of Mg-MgO nanoplates with water vapor (3.5 vol % in N<sub>2</sub>) decreases with temperature, with no oxidation of the Mg core detected from 200 to 400 °C. …”
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