锂离子

[lǐ lí zǐ]
  • 锂离子
  • 释义

    lithium ion;

纠错 数据更新时间:2026-04-18 14:01:33
1、

High discharge current performance of lithium ion bettery is introduced.

摘要研究了锂离子电池大电流放电性能.

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2、

Great importance is attached to the lithium-ion rechargeable battery electrolyte and additive.

锂离子蓄电池电解液及其添加剂的研究日益受到研究者的重视.

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3、

The preparation of Nickel-based cathode materials for Lithium-ion batteries was studied.

本文讨论了前驱体法制备镍基 电池 正极材料的方法.

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4、

Lithium ion batteries are currently the best portable storage device for the consumer electronics market.

锂离子电池是当今便携式电子消费品的理想电源.

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5、

New anode materials for lithium-ion batteries with long cycle life and high capacity are urgently needed to meet the increasing demands of portable electronic device and electric vehicles ( or hybrid electric vehicles).

近年来,便携式电子设备和电动汽车(混合动力汽车)的高速发展对于锂离子电池的性能提出了更高的要求,从而推动了研究高比容量、长寿命锂离子电池负极材料的研究。

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6、

The chemistry and electrochemistry of lithium electrolyte salts are introduced.

介绍了锂离子电池电解质锂盐的化学和电化学.

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7、

The structural model and lithium ion transferring behavior are also put forward.

提出了结构模型和锂离子迁移行为.

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8、

The polyanionic structure has open three-dimensional frame network. The structure has little rearrangement and keeps good stability when the lithium ions de-intercalate in the cathode material.

聚阴离子结构具有开放性的三维框架结构,当锂离子在正极材料中嵌脱时,材料的结构重排很小,结构能保持良好的稳定性。

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9、

Lithium-ion battery cell research has become a hot spot.

电池 已经成为电池方面研究的热点.

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10、

Lithium nickel oxide as the electrode of lithium ion batteries has aroused more and more interests.

锂镍氧化物是目前高容量大功率锂离子电池正极材料的主要候选材料之一.

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11、

But how to develop lithium-ion battery industry is the unsolved key problem.

但如何发展锂离子电池产业却是尚未解决的关键问题.

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12、

This article reviews the operation fundamentals of Li + rechargeable battery.

解释了锂离子二次电池的工作原理.

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13、

Lithium hydronium cell ( group ), nicel hydrogen cell ( group ), nicel cadmium cell ( group ), fastener cell ( group ).

锂离子电池 ( 组 ) 、 镍氢电池 ( 组 ) 、 镍镉电池 ( 组 ) 、 纽扣电池.

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14、

As critical materials used in polymer lithium-ion battery ( PLB), Polymer electrolytes affect the performance of batteries directly but decide the process for PLB manufacturing.

聚合物电解质是研发聚合物锂离子电池的关键材料,它们不但直接影响电池的性能而且也决定了聚合物锂离子电池的生产工艺。

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15、

High temperature immobile phase was used to prepare adsorbent for lithium ion.

采用高温固相法制备锂离子吸附剂.

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16、

The electrochemistry parameter testing system of Li-ion battery was developed through the research of the method of charge and discharge on Li-ion battery and the method of electrochemistry parameter testing.

通过对锂离子电池充放电方法和电化学测试方法的研究,开发了锂离子电池电化学参数测试仪。

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17、

The studied object was from prussian blue to its derivates.

本文研究了普鲁士蓝衍生物作为锂离子电池材料的应用.

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18、

The wet-chemical recovery process of spent lithium ion batteries was investigated.

废旧锂离子电池中钴的含量较高.

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19、

Among the materials, carbon materials are the first one been researched and applied in the lithium ion battery anode materials.

锂离子电池负极材料中,碳材料是人们开始研究并应用于锂离子电池生产的负极材料。

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20、

Studies of tin based anode materials for lithium ion secondary battery have been reviewed.

综述了锂离子蓄电池锡基负极材料的研究.

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21、

The deposition mechanism of lithium on aluminium electrode was studied by using linear sweep voltammetry.

利用线性扫描伏安法详细研究了锂离子在铝电极上的电极过程机理.

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22、

Lithium-ion battery. CE compliant. Made in China.

锂离子电池. 符合CE安全标准. 中国制造.

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23、

Lithium ion batteries are common in consumer electronics.

锂离子电池在消费电子领域很普遍.

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24、

The results showed that the charge-discharge of PPy/ VXG composite cathode material was realized by doping-undoping of anions and lithium ions.

结果表明:PPy/VXG复合正极材料是通过阴离子的掺杂/脱掺杂及锂离子的嵌脱反应来实现充放电的;

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25、

The developing status of lithium ion battery for HEV was introduced.

最后介绍了电动车用锂离子电池的研究开发情况.

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26、

CAW were firstly reported applied as a cathode of the lithium-ion secondary batteries in the dissertation.

本文首次将碳原子线用作锂离子二次电池的负极材料.

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27、

The hydration number of Li ion decreases with increasing concentration, but this is compensated by the increasing number of Li+ Br-contact ion pairs, and the coordination number of the first coordination shell of Li ion keeps approximately unchanged.

随浓度增加,锂离子的水合数量呈减少趋势但同时又从Li+-Br-接触离子对的数量增加中得到补偿,而Li离子的第一配位壳层的配位数量保持不变。

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28、

Lithium ion battery has 4 times specific energy and specific power than Nickel-Cadmium battery.

由于锂离子电池的比能量密度和比功率密度均为镍镉电池的4倍以上,近年来锂离子电池以年均20%的速度迅速发展。

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29、

Lithium-ion-battery fires have forced some high-profile recalls of laptops.

电池 起火曾引发数起笔记本电脑大量被召回的事件.

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30、

There is a promising use of polymer electrolyte for Lithium ion batteries.

聚合物电解质在锂离子电池方面具有广泛的应用前景.

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