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   high specific capacity 在 电力工业 分类中 的翻译结果: 查询用时:0.961秒
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high specific capacity    
相关语句
  比容量
    The key technologies of lithium-ion batteries are the development of cathode materials. At present, research work is mainly focused on LiCoO_2, LiMn_2O_4 and LiNiO_2. As cathode material, LiNiO_2 with layered structure has the characteristics of high specific capacity, low cost and non-pollution, which is regarded as one of the most promising material to replace LiCoO_2. LiNiO_2 doped with Co can improve its thermal stability and electrochemical properties.
    锂离子电池发展的关键在于正极材料的开发,目前研究最多的是三种富锂的金属氧化物LiCoO_2、LiMn_2O_4、LiNiO_2。 LiNiO_2层状化合物作为锂离子二次电池的正极材料,具有比容量高、成本低、污染小等优点,被认为是最有希望取代其商品化正极材料LiCoO_2的新型正极材料之一。
短句来源
    Ba and emplying means of single wash and step oven-dry in the range of pH from 8 to 11. A plastic-bonded Ni electrode with flexibility and high specific capacity could be prepared by dropping CoO or Co (Ac)2, Its conductive body was made of deflocculated graphite and carbon black(3 :1)using the bondant with 2% CMC(3%) and 6. 68% PTFE(60%).
    胶体石墨和乙炔黑为3:1作导电材料,2%的CMC(3%)和6.86%的PTFE(60%)作粘结剂,添加CoO或Co(Ac)_2可以制得柔性很好的高体积比容量粘结式镍电极。
短句来源
    Layered cathode material Li1+xV3O8 has the merits of high specific capacity,long cycling life and low price, making it one of the most promising candidates for the next-generation cathode material of lithium ion battery.
    层状的Li_(1+x)V_3O_8电池正极材料具有比容量高、循环寿命长、价格便宜等优点,有望成为新一代锂离子二次电池的正极材料。
短句来源
    High specific capacity of Ni MH battery has intimate relations with its self discharge and cycle life.
    金属氢化物镍碱性蓄电池(MH-Ni电池)的比容量与自放电和循环寿命具有相当密切的关系。
短句来源
    Li_(1+δ)V_3O_8 has the advantages of high specific capacity, long cycling life and low price, so it will become a very promising cathode material for lithium-ion batteries in the future.
    锂钒氧化物Li1+δV3O8具有比容量高、循环寿命长、价格低等优点,因此它是一种非常有应用前景的锂离子蓄电池正极材料。
短句来源
更多       
  高比容量
    High specific capacity nickel electrodes with hollow fibrous substrate
    高比容量中空纤维镍电极的研究
短句来源
    The Preparation of High Specific Capacity Ni(OH)_2 Electrode
    高比容量氧化镍电极的研制
短句来源
    Some technical measures for high specific capacity type AA Ni MH battery are proposed . These have good influence on the technic development of Ni series batteries.
    提出了AA型高比容量MH-Ni电池的技术措施,这些对Ni系列电池技术的发展具有较好的借鉴。
短句来源
    Synthesis of LiNi_(0.8)Co_(0.2)O_2 with high specific capacity and low cost and its application in 18650 type Lithium ion batteries were investigated. The specific discharge capacity of LiNi_(0.8)Co_(0.2)O_2 was above 180 mAh/g.
    对高比容量、低成本的氧化镍钴锂材料的合成及其在18650型锂离子电池中的性能进行了研究,合成出的批量5kg的氧化镍钴锂材料的放电比容量达到180mAh/g以上.
短句来源
    Lithium-ion batteries have developed greatly because of its excellent electrochemical properties, high specific capacity, long cycle performance, high energy density and other merits, such as high discharge voltage, small volume and less harm to environment.
    锂离子电池因其优越的电化学性能、高比容量、长循环寿命、高能量密度以及放电电压高、体积小、环保绿色等特性在过去的十年内得到了迅猛发展。
  比容量高
    The key technologies of lithium-ion batteries are the development of cathode materials. At present, research work is mainly focused on LiCoO_2, LiMn_2O_4 and LiNiO_2. As cathode material, LiNiO_2 with layered structure has the characteristics of high specific capacity, low cost and non-pollution, which is regarded as one of the most promising material to replace LiCoO_2. LiNiO_2 doped with Co can improve its thermal stability and electrochemical properties.
    锂离子电池发展的关键在于正极材料的开发,目前研究最多的是三种富锂的金属氧化物LiCoO_2、LiMn_2O_4、LiNiO_2。 LiNiO_2层状化合物作为锂离子二次电池的正极材料,具有比容量高、成本低、污染小等优点,被认为是最有希望取代其商品化正极材料LiCoO_2的新型正极材料之一。
短句来源
    Layered cathode material Li1+xV3O8 has the merits of high specific capacity,long cycling life and low price, making it one of the most promising candidates for the next-generation cathode material of lithium ion battery.
    层状的Li_(1+x)V_3O_8电池正极材料具有比容量高、循环寿命长、价格便宜等优点,有望成为新一代锂离子二次电池的正极材料。
短句来源
    Li_(1+δ)V_3O_8 has the advantages of high specific capacity, long cycling life and low price, so it will become a very promising cathode material for lithium-ion batteries in the future.
    锂钒氧化物Li1+δV3O8具有比容量高、循环寿命长、价格低等优点,因此它是一种非常有应用前景的锂离子蓄电池正极材料。
短句来源
    While LiNiO_2 is the most promising cathode materials: plenty in resource, cheapness in price, high specific capacity and non-toxicity. But it is difficult to be synthesized, and its unstable structure results in rapid capacity fading and bad thermal stability.
    LiNiO_2是最有希望的正极材料,其资源丰富,价格低廉,比容量高,对环境友好,但合成困难,由于结构不稳定会导致容量衰减、热稳定性差。
短句来源
    While layered LiNiO2is the most promising cathode materials: plenty in resource, cheapness in price, high specific capacity and non-toxicity.
    层状LiNiO_2化合物,其资源丰富,价格低廉,比容量高,对环境友好,被公认为是最有希望的正极材料。
短句来源
更多       
  高比容量
    High specific capacity nickel electrodes with hollow fibrous substrate
    高比容量中空纤维镍电极的研究
短句来源
    The Preparation of High Specific Capacity Ni(OH)_2 Electrode
    高比容量氧化镍电极的研制
短句来源
    Some technical measures for high specific capacity type AA Ni MH battery are proposed . These have good influence on the technic development of Ni series batteries.
    提出了AA型高比容量MH-Ni电池的技术措施,这些对Ni系列电池技术的发展具有较好的借鉴。
短句来源
    Synthesis of LiNi_(0.8)Co_(0.2)O_2 with high specific capacity and low cost and its application in 18650 type Lithium ion batteries were investigated. The specific discharge capacity of LiNi_(0.8)Co_(0.2)O_2 was above 180 mAh/g.
    对高比容量、低成本的氧化镍钴锂材料的合成及其在18650型锂离子电池中的性能进行了研究,合成出的批量5kg的氧化镍钴锂材料的放电比容量达到180mAh/g以上.
短句来源
    Lithium-ion batteries have developed greatly because of its excellent electrochemical properties, high specific capacity, long cycle performance, high energy density and other merits, such as high discharge voltage, small volume and less harm to environment.
    锂离子电池因其优越的电化学性能、高比容量、长循环寿命、高能量密度以及放电电压高、体积小、环保绿色等特性在过去的十年内得到了迅猛发展。

 

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  high specific capacity
The silicon-coated graphite showed high specific capacity and good cycle performance due to the formation of amorphous silicon-carbon black composite layer on the surface of the graphite particles.
      
Technique for preparing microfilters with high specific capacity
      
The regolith wells have a high specific capacity, 40-270?m3/d/m and a high yield, 700-4,050?m3/d.
      
The maximum amount of lithium inserted in β-MoO3 leads to a high specific capacity of the cell of 370?Ah?kg-1.
      
These differences between sinkhole and high specific capacity distributions suggest vertical flow components are primarily controlled by the orientation of geologic structure and associated subsurface fracturing.
      
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