Showing 21 - 40 results of 27,440 for search '(( 10 mpa decrease ) OR ( 50 ((((teer decrease) OR (a decrease))) OR (nn decrease)) ))', query time: 0.71s Refine Results
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    EB (Ethyl Butyrate) as a Cosolvent of Electrolyte Tuning an Ultrathin CEI Membrane for Improving the Ultralow-Temperature Behaviors of LiNi<sub>0.8</sub>Co<sub>0.1</sub>Mn<sub>0.1<... by Lucheng Li (13753395)

    Published 2023
    “…Besides, the electrochemical properties of the batteries during cold conditions can be obviously improved by adding EB. In addition, after 50 cycles of −40 °C, the basic electrolyte has a discharge capacity of 81.94 mAh g<sup>–1</sup>; on the contrary, the cells using the 16 EB-modified coreagent maintains a discharge capacity of 112.3 mAh g<sup>–1</sup> under the same conditions. …”
  13. 33

    EB (Ethyl Butyrate) as a Cosolvent of Electrolyte Tuning an Ultrathin CEI Membrane for Improving the Ultralow-Temperature Behaviors of LiNi<sub>0.8</sub>Co<sub>0.1</sub>Mn<sub>0.1<... by Lucheng Li (13753395)

    Published 2023
    “…Besides, the electrochemical properties of the batteries during cold conditions can be obviously improved by adding EB. In addition, after 50 cycles of −40 °C, the basic electrolyte has a discharge capacity of 81.94 mAh g<sup>–1</sup>; on the contrary, the cells using the 16 EB-modified coreagent maintains a discharge capacity of 112.3 mAh g<sup>–1</sup> under the same conditions. …”
  14. 34

    Tunable Electrical Properties of Embossed, Cellulose-Based Paper for Skin-like Sensing by Tongfen Liang (9601461)

    Published 2020
    “…The largest increase in conductivity from 8.38 × 10<sup>–6</sup> to 2.5 × 10<sup>–3</sup> S/m by a factor of ∼300 occurred at a percolation threshold of 3.8 wt % (or 0.36 vol %) with the composite paper plastically compressed by 410 MPa, which caused a decrease of porosity from 88% to 42% on average. …”
  15. 35

    Tunable Electrical Properties of Embossed, Cellulose-Based Paper for Skin-like Sensing by Tongfen Liang (9601461)

    Published 2020
    “…The largest increase in conductivity from 8.38 × 10<sup>–6</sup> to 2.5 × 10<sup>–3</sup> S/m by a factor of ∼300 occurred at a percolation threshold of 3.8 wt % (or 0.36 vol %) with the composite paper plastically compressed by 410 MPa, which caused a decrease of porosity from 88% to 42% on average. …”
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