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锂电极的英文

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"锂电极"怎么读用"锂电极"造句

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  • electrode of lithium

例句与用法

  • Lithium - inserting electrode materials synthesized by citric acid sol - gel method
    凝胶法合成嵌锂电极材料
  • Aiming to the above goals , two original modifying ways of lithium electrode were suggested to make lithium electrode have a more stable sei film
    针对以上目标,提出两种全新的锂电极改性方法,以使锂金属电极表面具有更加稳定的sei膜。
  • One was using the cyclic ether to pretreat the lithium metal electrode . and a favorable surface sei film was wished to form on the lithium metal , to enhance the interface stability of lithium electrode and the cycleability of lithium battery
    方法一:尝试采用环醚类化合物对金属锂电极进行表面预处理,预先在金属锂表面形成良好的表面sei膜,提高锂电极界面稳定性和锂负极的电化学性能。
  • The other was to research new li - al solid solution alloy material and use it as anode in lithium battery . by the trace alloy component , aluminum , doping in lithium metal , it was hoped to improve the sei film stability of lithium / electrolyte interface and consequentially enhance the performances of lithium anode . meanwhile , different form the previously studied lial alloy that had very high content of aluminum , such alloy should not decrease the mass specific energy and electrochemical potential of lithium electrode
    方法二:研究新型锂铝固溶体合金材料并将其应用于锂二次电池中,通过微量合金成份铝的掺杂提高锂电极/电解质界面sei膜的稳定性,进而提高锂负极性能;而该合金不会像以往高铝含量的锂铝合金那样降低锂电极的质量比能量和电化学反应电势。
  • The present studies have proved that the most important factor which influences the performances of lithium metal anode in battery is the solid electrolyte interphase interface - film ( sei film ) on lithium anode . and how to make lithium metal anode have a sei film with favorable composition and stable configuration , or make the sei film have better stability , is the key to improve the electrochemistry performances of lithium metal anode in lithium secondary battery
    已有的研究证明:影响金属锂负极在电池中性能的主要因素是其表面的固体电解质中间相界面膜( sei膜)的性能;如何使锂金属电极表面具有组成良好、结构稳定的sei膜,或者使锂电极表面sei膜能够更好的“稳定化” ,是提高锂二次电池中锂金属负极电化学性能的关键。
  • In the work , it was systemically studied that the effects of two suggested modifying ways on electrochemical characteristics of lithium metal electrode and its behaviors in lithium cell . finally , the action mechanisms of these two modifying ways were analyzed . through the study on pretreatment effects of different cyclic ether on lithium electrode , it was found that 1 , 4 - dioxane ( doa ) and 1 , 3 - dioxolane ( dol ) , both could form a favorable passivating sei film on lithium electrode surface through
    研究不同环醚对锂电极的预处理作用发现, 1 , 4 -二氧六环( doa )和1 , 3 -二氧五环( dol )对金属锂电极的表面预处理均可以在金属锂表面形成一层良好的sei钝化膜,对锂金属电极起到了保护性作用,使锂电极具有较小的界面阻抗,有效地提高了金属锂电极的充放电循环效率,改善了锂金属电极在循环过程中的表面形貌;而doa和dol对金属锂电极的表面预处理,不会明显的影响锂电极的动力学性能。
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