Cathode Materials
| Cat | Products Name | Key Features | Price |
|---|---|---|---|
| BM-CM-041 | Ternary Cathode Material 14.8μm | Ternary Cathode; Good Conductivity | Request a Quote |
| BM-CM-042 | Ternary Cathode Material 5.01μm | Ternary Cathode; Good Conductivity | Request a Quote |
| BM-CM-043 | Ternary Cathode Material 4.5μm | Ternary Cathode; Good Conductivity | Request a Quote |
| BM-CM-044 | Ternary Cathode Material 6.04μm | Ternary Cathode; Good Conductivity | Request a Quote |
Introduction to Cathode Materials

Cathode materials determine lithium-ion battery performance—capacity, voltage, and stability. AIMRSE supplies a full spectrum of advanced chemistries: LFP, NMC (811, 622, 532), NCA, LCO, LMO, and doped variants. Synthesized via solid-state and co-precipitation routes, our materials feature controlled particle size, high purity, and consistent crystallinity.
We support customers from R&D to mass production with rigorous quality control (ICP, XRD, SEM) and technical data. Whether for high-energy EVs or long-life storage, AIMRSE delivers reliable, tailor-made cathode solutions that accelerate battery innovation.
Application Fields
AIMRSE cathode materials are precisely engineered to meet the diverse electrochemical and mechanical demands of various battery markets, enabling superior performance in each specific application.

Electric Vehicle & Mobility Batteries
AIMRSE supplies high‑energy NMC 811 and NCA for EVs, maximizing driving range. High‑voltage LCO meets luxury EV power needs. For commercial vehicles, LFP and LMFP deliver long cycle life, safety, and cost efficiency.

Stationary Energy Storage Systems (ESS)
AIMRSE’s LFP, LMFP, and LMO cathodes for ESS ensure decades of reliability with minimal gas generation. Optimized particle design enables thick electrodes for high energy density and low total cost of ownership.

Consumer Electronics & Portable Devices
For consumer electronics, AIMRSE’s high‑tap‑density LCO and NMC maximize energy in slim devices. Doping technologies suppress cobalt dissolution, extending battery life under daily use.

Next-Generation & Solid-State Battery R&D
AIMRSE enables next‑gen R&D with LRMO for >300 Wh/kg and coated NMC for solid‑state batteries. Custom synthesis tailors morphology for all‑solid‑state prototypes, accelerating innovation.
Customization Services
AIMRSE recognizes that one-size-fits-all cathode materials rarely meet the precise needs of advanced battery development. We offer a range of customization services, developed in close collaboration with our customers to optimize electrochemical performance, processability, and cost.
Particle Engineering & Morphology Control
We can tailor particle size distribution (D10, D50, D90), specific surface area (BET), and tap density to match your electrode coating process. Options include mono-disperse spheres, dense granules for high compaction, or porous secondary particles for enhanced electrolyte penetration.
Doping & Surface Coating Modification
To improve structural stability and suppress parasitic reactions, we offer elemental doping (Mg, Al, Ti, Zr) and surface coatings (Al₂O₃, ZrO₂, carbon, LFP) tailored to your voltage window and electrolyte chemistry. These modifications enhance cycle life and reduce gas evolution.
R&D-Scale & Pilot Quantities
From gram-scale laboratory samples to metric-ton pilot batches, AIMRSE supports all development stages. Our flexible manufacturing lines allow rapid iteration of composition and morphology, enabling faster prototyping and validation for your next-generation cells.
Technical Co-Development & Characterization
Beyond material supply, our electrochemistry team offers full technical partnership, including coin/full cell testing, electrode formulation advice, and failure analysis. We work alongside your engineers to interpret data and refine material properties, accelerating your time to market.
Proven Success Cases
Real‑world implementations of AIMRSE cathode materials driving performance and reliability across energy storage, mobility, and electronics.
Breakthrough in High‑Voltage Stability for NMC 811
R&D PartnershipA leading battery research institute utilized AIMRSE’s single‑crystal NMC 811 to achieve over 2,000 cycles at 4.5 V with minimal capacity fade, enabling next‑generation EV batteries with extended range and faster charging.
The exceptional structural stability of AIMRSE’s material allowed us to push voltage limits without compromising safety. The batch‑to‑batch consistency was critical for our long‑term study.
Scalable LFP Production for Grid Storage
Industrial Scale‑upA major energy storage manufacturer integrated AIMRSE’s high‑tap‑density LFP into their megawatt‑scale systems, achieving 15% higher electrode loading and reducing cell costs by 8% while maintaining 10,000‑cycle life.
AIMRSE’s consistent quality and supply chain reliability have been instrumental in ramping our production to 10 GWh annually. Their technical team worked side‑by‑side with our engineers to optimize the slurry formulation.
Ultra‑Thin Cathode for Implantable Devices
Medical GradeA medical device company selected AIMRSE’s coated LCO cathode material for a next‑generation neurostimulator, achieving 30% higher energy density in a 50% thinner electrode, enabling longer device lifetime and reduced patient procedures.
The custom particle engineering and low impurity levels met our stringent biocompatibility and performance requirements. AIMRSE delivered prototype quantities within three weeks for accelerated validation.
High‑Energy Density for Premium Smartphones
Consumer ElectronicsA top smartphone OEM partnered with AIMRSE to develop a custom NCA cathode with optimized particle size distribution, enabling a 12% increase in battery capacity without increasing footprint, powering all‑day use for flagship devices.
AIMRSE’s rapid prototyping and technical support helped us meet aggressive launch timelines with superior battery performance. The final material delivered consistent voltage plateau and low impedance even at high C‑rates.
The AIMRSE's Advantages
AIMRSE cathode materials are distinguished by rigorous quality systems, deep materials science expertise, and a customer-centric approach. The following advantages define our commitment to excellence.
Exceptional Purity & Compositional Accuracy
Our cathode materials feature strict control over transition metal stoichiometry and impurities (Fe, Cu, Na typically <50 ppm). This precision ensures reproducible electrochemical performance and minimizes side reactions for stable battery manufacturing.
Superior Batch-to-Batch Consistency
Using statistical process control and full traceability, we deliver minimal variation in PSD, capacity, and first-cycle efficiency. This consistency improves yields and tightens performance distributions in your production lines.
Tailored Electrochemical Performance
We adjust reversible capacity, rate capability, or voltage by optimizing synthesis and post-treatment. Our portfolio includes options for high-energy (NMC, NCA), high-power (LMO, LFP), and ultra-long life (single crystal NMC, LFP) applications.
Frequently Asked Questions (FAQ)
What is the typical specific capacity of AIMRSE NMC 811 cathode material?
Do you offer cathode materials with custom particle size distribution (PSD)?
What quality control documentation is provided with each shipment?
Related Products
Note: Our battery cells and materials are intended for R&D and industrial testing. Complete energy storage systems are certified for operational deployment.
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