色欲国产麻豆一精品一av一免费-色欲狠狠躁天天躁无码中文字幕-色欲精品国产一区二区三区av-色欲久久久天天天综合网-色欲久久久天天天综合网精品-色欲久久综合亚洲精品蜜桃

The First Launch of Cobalt-Free Cathode Materials in the Industry

Through cation doping, single crystal technology, and nano network coating, SVOLT has greatly addressed the major issues that restrict the development of cobalt-free batteries, such as nickel-lithium ion mixing of cobalt-free layered materials and cycle life.

  • c6fldesz.png

    90

    Domestic technology patents

  • c6fldesz.png

    46

    International technology patents

c4_img03.jpg

Three Key and Core Technical Supports

  • c4_img02.png

    Cation doping technology

    Increase nickel content and reduce mixed discharge of lithium nickel (-5%)

    Stable oxygen octahedral structure

  • c4_img06.jpg

    Single crystal technology

  • c4_img05.png

    Nano network coating technology

SVOLT NMX Cobalt-Free Cathode Material
comparative Performance Compared with NCM811 Material

The performance comparison between NMX cobalt-free material and NCM811 NCM material demonstrated that the former is superior to the latter in terms of thermal runaway, thousand cycle life, and BOM cost.

Thermal runaway (°C)

Keep 1000 life cycles

NCM811

155

87

NMx

170

95

New Generation Lithium Iron Materials

The new generation of high-energy density lithium iron phosphate material is mainly used for power batteries. It has the advantages of higher graphitization and uniformity due to carbon coated layer, better low-temperature performance, as well as higher compaction density characteristic.

c4_img05.jpg

Application Fields

  • c4iocpm.svg

    Electric passenger vehicles

  • c4_icon03.svg

    Electric logistics vehicles

  • c4_icon04.svg

    Electric bus

  • c4_icon05.svg

    Electric two wheeled vehicles

  • c4_icon06.svg

    Electro-tricycle

  • c4_icon07.svg

    Energy storage system

Material Characteristics

  • c7iconm.svg

    New technologies

    Advanced carbon composite coating technology is innovatively applied to establish a three-dimensional conductive network to improve the graphitization and uniformity of the carbon coating layer.

  • 策略.svg

    New strategies

    Dominant crystal surface growth and control of reverse defects are realized by metal cation composite doping to improve the low-temperature performance of the material.

  • 壓實.svg

    High compaction

    By optimizing the calcination process, the material size and particle size distribution can be achieved to ensure the material capacity while increasing the compaction density.The density is ≥ 2.6g/cm3.

High Performance Advantages

  • c4_img06.png

    More excellent rate performance, with 5C/0.1C capacity retention ratio ≥ 75%.

    3,000 cycles, capacity retention ratio ≥ 80%.

Medium-Nickel High-Voltage Ni6 Material

The medium-nickel high-voltage material (Ni6) of SVOLT has a total capacitance of 0.33C ≥ 194mAh/g, which is higher than the competitors (≈ 193mAh/g). The DCR of 50% SOC in normal temperature of 4.4V is 15-20% lower than the competitors, making it suitable for high-energy density fast-charging cell projects.

c4_img08.jpg

Application Fields

  • c4iocpm.svg

    Electric passenger vehicles

  • c4_icon03.svg

    Electric logistics vehicles

  • c4_icon05.svg

    Electric two wheeled vehicles

  • c4_icon06.svg

    Electro-tricycle

Material Characteristics

  • 0.1.svg

    196mAh/g

    Under 0.1C condition, the amount of electricity contained per gram of lithium battery material

  • 1c.svg

    180 mAh/g

    Under 1C condition, the amount of electricity contained per gram of lithium battery material

  • Component 1.svg

    245℃

    High decomposition temperature

  • 循環.svg

    High cycle

    50 cycles under 1C state: 98.3%

  • 密度.svg

    726Wh/kg

    The energy density of materials reaches

Core Technological Advantages

  • c4_img08.png

    Good dispersion of primary particles, with round edges which is conducive to the capacity utilization.

  • c4_img09.png

    Outstanding electricity deduction (capacity and cycle) performance, with a cycle retention ratio of over 98%.

Medium-Nickel High-Voltage Ternary Material (Ni6)

c4_img10.png

The performance of medium-nickel high-voltage ternary material (Ni6) is superior is better than high nickel material in different systems.

The 4.35V system is subject to excellent cycling performance and lower gas production for better service life and safety;

The 4.4V system has a higher energy density, which can match(satisfy) more demands and provide more choices in application directions;

No matter under the 4.35V or 4.4V system, the service life and safety of medium-nickel material are better than high nickel material, and the energy density is close to that of high nickel material, which is a cost-effective cathode material.

主站蜘蛛池模板: 中文字幕乱码亚洲精品一区 | 精品国产精品 | 国产精品视频一区二区三区 | 天天看天天爽 | 激情五月色婷婷色综合 | 在线观看一级毛片免费 | 国产成人a毛片在线 | 男女无遮挡边做边吃视频免费 | 亚洲色无码A片一区二区情欲 | 国产美女久久 | 国产91大片 | 久久免费电影 | www一区二区| 日韩中文字幕视频 | 久草免费资源站 | 美女短视频在线观看免费 | 免费国产叼嘿视频大全网站 | 天天狠狠弄夜夜狠狠躁·太爽了 | 夜夜干夜夜操 | 91精品成人免费国产片 | 美女无遮挡免费网站 | 婷婷色国产 | 奇米影视久久777中文字幕 | 耽美肉文np| 亚洲一区二区三区夜色 | 欧美激情在线免费观看 | 国产日本久久久久久久久婷婷 | 91精品国产自产在线观看高清 | 国产一区二区三区久久 | 欧美成人七十二式性视频教程 | 亚洲日本精品色情论理 | 一区二区三区欧美在线观看 | 国产一区二区三区在线 | 一本一本久久a久久综合精品蜜桃 | 青青久视频| 九久久| 欧美午夜a级精美理论片 | 色综合久久久久综合体桃花网 | 欧美精品久久一区二区三区 | 国产成人18黄网站在线观看网站 | 99爱在线观看 |