Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP
Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP
Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP
Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP
Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP

Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP

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Battery single-walled carbon nanotubes NMP conductive adhesion cycle cathode cell single-walled carbon nanotubes NMP

About the product

Characteristic

CAS

74513635

Material

Carbon

Origin

Import

Product Name

Single-Walled Carbon Nanotubes NMP

Item No.

AL710198971624

Fineness

Nanometer

Model

NMP

Color

Black

Purpose

Battery positive cell

Form

Dispersion

Import or not

No

Hazardous chemicals

No

Description

 

TUBALLBATT NMP

 


TUBALL™单壁碳纳米管的导电性能,仅需0.06%的添加量即可提供正极所需的导电性、附着力、性、倍率和循环特性,且是同类产品中是的。工业用多壁碳纳米管或导电炭黑的典型添加量,常常是单壁碳纳米管的10-50倍!TUBALL™单壁碳纳米管的超低添加量,可让锂离子电池制造商添加更多活性材料—在目前NCM和其他正极材料中可达99%,使正极能量密度化。在现代电动汽车的电池中加入100克TUBALL™,即可替代原配方中所需的3-4千克炭黑。

材料系统
高能量正极(NCM 811, NCM 622, NCM 523,NCA, LCO, LFP)
载体
NMP(N-甲基吡咯烷酮)、PVDF(聚偏氟乙烯)、其他
形态
分散体

主要优势

Boosted energy density

Thanks to 10–60 times lower loading of conductive additive, up to 98.8% active material content possible in dry electrode

Higher safety

Increased safety due to halved battery resistance increase (DCR)

Higher discharge power

>50% higher at high discharge rates

Improved adhesion

Doubled thanks to the bond strength between cathode particles

 

主要应用

电池
正极
电芯
能量储存
电动车
混合电容器
铅酸
锂离子电池
电容器
悬浮液

mtw-10406890.jpg

mtw-10407741.jpg

mtw-10407755.jpg

Characters

Properties

CAS

74513635

Material

Carbon

Origin

Import

Product Name

Single-Walled Carbon Nanotubes NMP

Description

 

TUBALLBATT NMP

 


TUBALL™单壁碳纳米管的导电性能,仅需0.06%的添加量即可提供正极所需的导电性、附着力、性、倍率和循环特性,且是同类产品中是的。工业用多壁碳纳米管或导电炭黑的典型添加量,常常是单壁碳纳米管的10-50倍!TUBALL™单壁碳纳米管的超低添加量,可让锂离子电池制造商添加更多活性材料—在目前NCM和其他正极材料中可达99%,使正极能量密度化。在现代电动汽车的电池中加入100克TUBALL™,即可替代原配方中所需的3-4千克炭黑。

材料系统
高能量正极(NCM 811, NCM 622, NCM 523,NCA, LCO, LFP)
载体
NMP(N-甲基吡咯烷酮)、PVDF(聚偏氟乙烯)、其他
形态
分散体

主要优势

Boosted energy density

Thanks to 10–60 times lower loading of conductive additive, up to 98.8% active material content possible in dry electrode

Higher safety

Increased safety due to halved battery resistance increase (DCR)

Higher discharge power

>50% higher at high discharge rates

Improved adhesion

Doubled thanks to the bond strength between cathode particles

 

主要应用

电池
正极
电芯
能量储存
电动车
混合电容器
铅酸
锂离子电池
电容器
悬浮液

mtw-10406890.jpg

mtw-10407741.jpg

mtw-10407755.jpg

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