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Showing 101 - 120 results of 7,149 for search '(( significant amount decrease ) OR ( significant challenge decrease ))', query time: 0.36s Refine Results
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    Tactile ano-genital sensitivity significantly increased at various time points beginning 1 day after 10 MI challenges. by Jaclyn M. Kline (9565161)

    Published 2020
    “…Black dotted line denotes 33% decrease from baseline. Significance with respect to control group *** p<0.001.…”
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    Revealing the Correlations between Morphological Evolution and Surface Reactivity of Catalytic Cathodes in Lithium–Oxygen Batteries by Zhen-Zhen Shen (6598409)

    Published 2021
    “…In 0–80 ORCs, the grown Pt nanoparticles promote the conversion of the Li–O<sub>2</sub> reaction route from the surface-mediated pathway to the solution-mediated pathway during discharging and significantly increase the discharge capacity. After 250 ORCs, accompanied by the part of the Pt nanoparticles detaching from the electrode, the nucleation potential of reaction product decreases, and the reaction dynamic slows down, which cause the performance to degrade. …”
  14. 114

    Revealing the Correlations between Morphological Evolution and Surface Reactivity of Catalytic Cathodes in Lithium–Oxygen Batteries by Zhen-Zhen Shen (6598409)

    Published 2021
    “…In 0–80 ORCs, the grown Pt nanoparticles promote the conversion of the Li–O<sub>2</sub> reaction route from the surface-mediated pathway to the solution-mediated pathway during discharging and significantly increase the discharge capacity. After 250 ORCs, accompanied by the part of the Pt nanoparticles detaching from the electrode, the nucleation potential of reaction product decreases, and the reaction dynamic slows down, which cause the performance to degrade. …”
  15. 115

    Revealing the Correlations between Morphological Evolution and Surface Reactivity of Catalytic Cathodes in Lithium–Oxygen Batteries by Zhen-Zhen Shen (6598409)

    Published 2021
    “…In 0–80 ORCs, the grown Pt nanoparticles promote the conversion of the Li–O<sub>2</sub> reaction route from the surface-mediated pathway to the solution-mediated pathway during discharging and significantly increase the discharge capacity. After 250 ORCs, accompanied by the part of the Pt nanoparticles detaching from the electrode, the nucleation potential of reaction product decreases, and the reaction dynamic slows down, which cause the performance to degrade. …”
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