麻豆最新网站_荡公乱妇小说_国语对白老女人一级hd_性欧美大战久久久久久久_国产精品免费在线_国产一区二区0

Welcome to the official website of Zhongshan Hochen Automation Equipment Co., Ltd.
  • 1
  • 2

NEWS

News Details
Position: Home> News Details
Can overcome surface heating and discover new lithium battery materials in Korea
Category: Industry Information
Date: 2018-07-12
Click: 5756
Author: admin
Collection:
At the same time, the synthesis method and improvement scheme of the anode material can be applied to the next generation electric vehicle and the medium and large energy storage system.


Lithium Grid
 News: The Korea Institute of Science and Technology announced that it has used the lithium-rich manganese- nickel-cobalt-manganese oxide (LMR) material to produce a new anode material that can overcome the surface heating phenomenon. This technology can improve the performance of electric vehicle batteries . The research was published in the international academic journal Nano Letters.


LMR materials have higher energy density and safety than other anode materials, but the crystal structure will be unstable during charge and discharge. This phenomenon mainly occurs on the surface of anode material particles, which has limitations in commercial applications. The Korean technology keeps the surface of the LMR anode material stable, thereby forming a surface structure that rapidly transmits lithium ions, suppressing the heating phenomenon of the material, and the manufacturing process is simple and convenient.

The research results show that the new material maintains its original characteristics when it is subjected to high-speed charge and discharge more than 300 times in 2 minutes. This technology can shorten the charging time and increase the driving distance. At the same time, the synthesis method and improvement scheme of the anode material can be applied to the next generation electric vehicle and the medium and large energy storage system.

Previous: Brief Discussion on Internal Short Circuit Simulation of Lithium Ion Battery
Next: How to improve the uniform infiltration effect of lithium battery electrolyte
主站蜘蛛池模板: 安阳市| 漠河县| 丽水市| 封丘县| 台东市| 梁平县| 洪湖市| 乐清市| 黑河市| 沐川县| 修水县| 格尔木市| 苍梧县| 福海县| 湘乡市| 砀山县| 冷水江市| 盐源县| 泽州县| 交城县| 米易县| 东平县| 灵璧县| 青神县| 海盐县| 德清县| 汝城县| 上犹县| 织金县| 合水县| 铅山县| 乐都县| 察隅县| 乌拉特后旗| 鄯善县| 措美县| 邵东县| 宝清县| 怀柔区| 南靖县| 剑川县|