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largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
ct largest » _ largest (Expand Search)
i largest » _ largest (Expand Search), i large (Expand Search)
c cycles » _ cycles (Expand Search), 6 cycles (Expand Search), w cycles (Expand Search)
8 cycles » _ cycles (Expand Search), 6 cycles (Expand Search), 10 cycles (Expand Search)
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Fabricating Co<sub>9</sub>S<sub>8</sub>@NiWO<sub>4</sub> Electrode toward Record Area Capacitance of 18.8 F cm<sup>–2</sup> for High Performance Supercapacitor
Published 2025“…The corresponding asymmetric supercapacitor shows high energy density of 0.48 mW h cm<sup>–2</sup> at 2.42 mW cm<sup>–2</sup> and superior cyclic stability of 79.2% retention over 7000 cycles at 10 mA cm<sup>–2</sup>. The great promotion in performance of Co<sub>9</sub>S<sub>8</sub>@NiWO<sub>4</sub> electrode is synergistically attributed to high intrinsic theoretical capacitances of compounds, abundance polyvalent states, improved conductivity, and increases in reaction sites and rate of the electrode. …”
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Effect of Hydrofluoric Acid Concentration and Thermal Cycling on the Bond Strength of Brackets to Ceramic
Published 2019“…Metallic brackets were bonded to the cylinders using Transbond-XT, light activated for 40 s, using a LED (Radii Plus) and stored in deionized water at 37o C for 24h. The groups 6 to 10 were submitted to thermal cycling (7,000 cycles - 5o/55oC). …”
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Mitigating Electrode-Level Heterogeneity Using Phosphorus Nanolayers on Graphite for Fast-Charging Batteries
Published 2023“…Our electrodes maintain consistent cycle retention (94.4%) and high Coulombic efficiency (>99.8%) over 1000 cycles at 1C owing to their enhanced reaction kinetics despite their relatively high capacity. …”
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Mitigating Electrode-Level Heterogeneity Using Phosphorus Nanolayers on Graphite for Fast-Charging Batteries
Published 2023“…Our electrodes maintain consistent cycle retention (94.4%) and high Coulombic efficiency (>99.8%) over 1000 cycles at 1C owing to their enhanced reaction kinetics despite their relatively high capacity. …”
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Mitigating Electrode-Level Heterogeneity Using Phosphorus Nanolayers on Graphite for Fast-Charging Batteries
Published 2023“…Our electrodes maintain consistent cycle retention (94.4%) and high Coulombic efficiency (>99.8%) over 1000 cycles at 1C owing to their enhanced reaction kinetics despite their relatively high capacity. …”
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Mitigating Electrode-Level Heterogeneity Using Phosphorus Nanolayers on Graphite for Fast-Charging Batteries
Published 2023“…Our electrodes maintain consistent cycle retention (94.4%) and high Coulombic efficiency (>99.8%) over 1000 cycles at 1C owing to their enhanced reaction kinetics despite their relatively high capacity. …”
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137
Mitigating Electrode-Level Heterogeneity Using Phosphorus Nanolayers on Graphite for Fast-Charging Batteries
Published 2023“…Our electrodes maintain consistent cycle retention (94.4%) and high Coulombic efficiency (>99.8%) over 1000 cycles at 1C owing to their enhanced reaction kinetics despite their relatively high capacity. …”
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