Sign In | Join Free | My portofva.com
China Dongying Linguang New Material Technology Co., Ltd. logo
Dongying Linguang New Material Technology Co., Ltd.
Dongying Linguang New Material Technology Co., Ltd. Profession, Integrity and trustworthy! Your best choice!
Verified Supplier

2 Years

Home > CMC Battery >

Sodium Carboxymethyl Suspension For Lead Acid Battery Stabilization In Silicon-based Electrode

Dongying Linguang New Material Technology Co., Ltd.
Trust Seal
Verified Supplier
Credit Check
Supplier Assessment
Contact Now

Sodium Carboxymethyl Suspension For Lead Acid Battery Stabilization In Silicon-based Electrode

Brand Name : Linguang

Model Number : BH8 BVH8 BH9 BVH9 BVH9 Ultra high visicosity BVH10

Certification : HALAL KORSHER ISO9001 HCCP ISO22000 ISO14001

Place of Origin : China

MOQ : 5mts

Price : USD

Payment Terms : L/C, D/A, D/P, T/T

Supply Ability : 1.5 ten thousand per year

Delivery Time : withing 15 days

Packaging Details : 25kg kraft paper bag with PE inner

Type : Lead Acid Battery

Cas No : 9004-32-4

Solubility : soluble

Manufacturer : linguang manufacturer

Function : barttery binder

Chemistry : Lead-Acid

Appearance : White or light yellow powder

Contact Now

Sodium Carboxymethyl Cellulose For Battery Industry

CMC, with the strong cohesion, good heat stability, electrical conductivity and electrochemistry property, makes the active substance and electrolyte form the even and dispersive paste, and takes the hydrogen bond effect with the silicon, therefore, it is not only widely used as the binder of cathode and anode, gel for cathode protection, but also widely applied in the silicon base electrode and graphite modification.

Application in silicon-based electrode

CMC used in the silicon-based electrode, besides the heat stability, conductivity and electrochemisty, the strong hydrogen bond exists between CMC and silicon. Hydrogen bond has the self-recovery, and it can adjust the stress which continuously enlarge during the circle process of the material and so that it can maintain the stability of the material structure, and keep the capacity over 1000mAh/g during at least 100 times circulation, and the coulombic efficienty reaches 99.9%. CMC which is applied in silicon-based electrode will show the effect as follows:

*With the strong shear-thinning property, CMC can adjust the rheoloty of the slurry;

*Excellent circulation, primitive reversible capacity and better capacity retention;

*Effectively cushion the change of the volume swelling of the silicon-based electrode, and improve the electrode reversibility;

*With the double optimization to mechanics stability and the chemistry stability, CMC promotes to form the SEI film;

* CMC impacts on silicon granule, and reduces the damages for silicon-based electrode volume swelling;

*Effectively inhibit the side-reaction between high reactive Li-Si alloy and electrolyte;

*Use with other gel binders, and enhance the binding strength and activation properties.

Specification
Types
Items
BH8 BVH8 BH9 BVH9 BVH9
Ultra high viscosity
BVH10
1% Aq. Viscosity, mPa▪s
( Brookfield 30rpm 25℃)
20-500 500-5000 20-500 500-5000 ≥5000 500-4000
400-2000        
Appearance White or slightly yellowish fibrous powder or particle
CMC content (w/%) ≥99.5
Degree of Substituion(D.S) 0.8-0.9 0.9-1.0 ≥1.0
Loss on drying(w/%) ≤10.0
PH value(10g/Lwater solution) 6.0-8.5
Sodium ethanolate(w/%) ≤0.5
Clorides(NACL w/%) ≤0.5
Sodium Glycolate(w/%)   ≤0.4
Sodium(w/%) ≤12.4
Au(mg/kg) ≤15
Fe(mg/kg) ≤15
Ca(mg/kg) ≤50


Product Tags:

silicon-based electrode Sodium Carboxymethyl Suspension

      

Lead Acid Battery Sodium Carboxymethyl Suspension

      

Battery Stabilization Sodium Carboxymethyl Suspension

      
China Sodium Carboxymethyl Suspension For Lead Acid Battery Stabilization In Silicon-based Electrode wholesale

Sodium Carboxymethyl Suspension For Lead Acid Battery Stabilization In Silicon-based Electrode Images

Inquiry Cart 0
Send your message to this supplier
 
*From:
*To: Dongying Linguang New Material Technology Co., Ltd.
*Subject:
*Message:
Characters Remaining: (0/3000)