grade
battery grade
form
slurry
composition
Si (active material), >28 wt. % , solids, 35-43 wt. %
color
dark gray to black
particle size
1 μm
application(s)
battery manufacturing
Quality Level
General description
Our ready-to-cast silicon anode slurry is a liquid-type dispersion, composed of high-purity 1-micron sized silicon particles, conductive additives, binder (poly(acrylic acid)), and water. The product features a high silicon loading content and excellent stability, ensuring superior performance and uniformity in battery fabrication.
Application
Our ready-to-cast silicon anode slurry is specifically designed to enable the production of high-performance silicon anodes for lithium-ion batteries. The slurry can be easily coated onto copper foil current collectors using blade-coating or slot-die coating techniques. Due to the precise formulation of our slurry, it is stable and processable, ensuring uniform and defect-free films of silicon anode material.The high silicon loading content and excellent stability of our ready-to-cast silicon anode slurry result in superior battery performance. Researchers can readily use our slurry to optimize their lithium-ion battery fabrication process, resulting in high-performance batteries suitable for a variety of applications.
signalword
Danger
hcodes
Hazard Classifications
Aquatic Chronic 3 - Eye Dam. 1
存储类别
10 - Combustible liquids
wgk
WGK 1
法规信息
新产品
此项目有
Study on Polymer Binders for High-Capacity SiO Negative Electrode of Li-Ion Batteries
S. Komaba, et al.
The Journal of Physical Chemistry C, 115, 13487-13487 (2011)
Conveying Advanced Li-ion Battery Materials into Practice The Impact of Electrode Slurry Preparation Skill
A. Kraytsberg, et al.
Advanced Energy Materials, 6, 1600655-1600655 (2016)
Advances of Polymer Binders for Silicon-based Anodes in High energy Density Lithium-ion Batteries
Y. M. Zhao et, al.
InfoMat, 3, 460-501 (2021)
Toward Efficient Binders for Li-Ion Battery Si-Based Anodes: Polyacrylic Acid
A. Magasinski, et al.
ACS Applied Materials & Interfaces, 11, 3004-3004 (2010)
An Effective Mixing for Lithium-ion Battery Slurries
D. Liu, et al.
Advances in Chemical Engineering and Science, 4, 5-5 (2014)
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