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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significantly we » significantly _ (Expand Search), significantly i (Expand Search), significantly lower (Expand Search)
decrease release » increased release (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significantly we » significantly _ (Expand Search), significantly i (Expand Search), significantly lower (Expand Search)
decrease release » increased release (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
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Flow chart of sediment P fractionation procedure.
Published 2025“…The P release rate was significantly and negatively correlated with dissolved organic C and redox potential at all temperatures, negatively correlated with sediment inorganic P at 21°C, while negatively correlated with sediment organic P at 37°C. …”
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In microglia, C1 reduced NO release triggered by IFNγ and PolyIC, and did not affect LPS induced cytokine release.
Published 2023“…Treatment with C1 caused a dose-dependent decrease of NO release in primary cultured microglia upon stimulation with IFNγ (left, in red) and PolyIC (right, in red). …”
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Vacancy Engineering Strategy Releases the Electrocatalytic Oxygen Evolution Reaction Activity of High-Entropy Oxides
Published 2025“…The sluggish kinetics of oxygen evolution reaction (OER) poses a great challenge to the industrial promotion of electrocatalytic water splitting and zinc-air battery. Herein, we demonstrate that the kinetic limitation of the OER imposed by a conventional adsorbate evolution mechanism can be successfully overcome through activating lattice oxygen in the electrocatalyst. …”
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Vacancy Engineering Strategy Releases the Electrocatalytic Oxygen Evolution Reaction Activity of High-Entropy Oxides
Published 2025“…The sluggish kinetics of oxygen evolution reaction (OER) poses a great challenge to the industrial promotion of electrocatalytic water splitting and zinc-air battery. Herein, we demonstrate that the kinetic limitation of the OER imposed by a conventional adsorbate evolution mechanism can be successfully overcome through activating lattice oxygen in the electrocatalyst. …”
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