The investigation and developing of lithium-ion batteries have attracted worldwide attention due to their excellent properties such as high cell voltage and specific capacity, and so on. Remarking progress has been made on researching carbon anode materials.
锂离子电池以电压高、比容量大等优点倍受世人关注,对锂离子电池的碳负极材料的研究已取得较大的进展,但正极材料中因锂钴氧化物价高而使其应用受到限制,开发新型的正极材料已是当务之急。
参考来源 - 锂离子电池锰系正极材料电子结构的量子化学DV—Xα研究·2,447,543篇论文数据,部分数据来源于NoteExpress
The mechanism of carbon anode consumption is introduced.
介绍了炭阳极消耗机理。
For production of high quality carbon anode, auto control level plays an important role.
在炭素阳极生产中,自动过程控制水平的高低将会直接影响到产品的质量。
With the increase of carbon anode scale, the production process raises a higher request to automatic control.
随着炭阳极生产规模的不断扩大,对生产工艺自动化控制提出了更高的要求。
应用推荐