Flux Battery
LiTX200 Conductive Carbon Black for Lithium Battery Electrode Slurry
LiTX200 Conductive Carbon Black for Lithium Battery Electrode Slurry
SKU:LA075-1
Verfügbarkeit für Abholungen konnte nicht geladen werden
- Bestellungen werden angenommen
- DDP Lieferung: 5–12 Tage
- 30 Tage Rückgabe- und Erstattungsrichtlinie
Description
LiTX200 conductive carbon black is designed for lithium-ion battery electrode formulations requiring high conductivity, stable slurry processing, and improved electrode density. It can be used in both cathode and anode systems, with typical addition levels between 1% and 10% depending on the formulation.
Compared with conventional conductive carbon additives, LiTX200 has a morphology that can help reduce solvent demand during electrode slurry preparation. This supports higher solids loading and better packing density, which are important for high-energy-density electrode design.
It is suitable for lithium-ion battery research, high-performance electrode formulation, power battery studies, and lab-scale cathode or anode slurry optimization.
Technical Specifications
| Parameter | Value |
|---|---|
| Product Type | Conductive Carbon Black |
| Product Name | LiTX200 |
| Appearance | Black conductive powder |
| BET Nitrogen Surface Area | 125–175 m²/g |
| Oil Adsorption Number | 152–172 mL/100g |
| Iron Content | <10 ppm |
| Total Co / Cr / Cu / Mn / Ni | <5 ppm |
| Recommended Addition Level | 1%–10% depending on formulation |
| Suitable Electrode Type | Cathode / Anode |
| Application | Lithium-ion battery electrode conductive additive |
Teilen

Kontaktformular
Kategorie
-
Knopfzellen-Gehäuse-Sets
Kaufen Sie hochwertige Knopfzellenkomponenten, einschließlich CR2032-, CR2025-, CR2016- und CR2430-Gehäuse, Abstandshalter, Wellenfedern...
-
Stromabnehmer & Folien
Entdecken Sie aktuelle Kollektoren und Folien für Batterieforschung, Elektrodenbeschichtung und elektrochemische Tests....
-
Montagewerkzeuge und Zubehör
Unsere Batteriemontagewerkzeuge und Zubehörteile sind für die präzise und zuverlässige Batterieforschung und...