Battery material analysis and characterization

Chemical analysis Material Characterization R&D Support
More than 140 people
More than 140 people at your service
5200 m² laboratory
5200 m² laboratory + 99% of services are provided in-house

As an industrial manufacturer, you want to carry out battery material analysis and characterization

Analysis and characterization of battery materials and their purity

The chemical purity of raw materials is a major issue for materials engineers. Even in small amounts, the presence of unwanted contaminants can alter the physical, electrical, and functional properties of materials, thereby compromising the reliability of the final product. Rigorous control of raw materials before production makes it possible to identify and prevent these impurities. Filab provides a wide range of analytical techniques to detect and quantify trace and ultra-trace impurities in a variety of advanced materials.

Our analytical services for battery raw materials

Elementary Chemical Characterization

  • Elemental Assay
  • Multi-Element Analysis
  • Detection of metallic contamination
  • Control of Solvents and Organic Impurities

Physical Characterization 

Non-Destructive Testing :

  • Internal inspection of cells and modules without disassembly

Quality and Regulatory Support

Why carry out battery material analysis and characterization?

Analysis and characterization of battery materials make it possible to optimize their design, improve their performance, and ensure their reliability. Several reasons justify carrying out these analysis:

Ensure material quality

Verification of the chemical composition and purity of raw materials.

Optimize battery performance

Analysis of the electrical, thermal, and structural properties of components.

Identify defects and prevent failures

Detection of impurities, microcracks, and unwanted reactions.

Meet regulatory and standards requirements

Compliance with current standards to ensure user safety.

Support innovation and the development of new technologies

Advanced studies to improve next-generation batteries.

Our solutions: supporting you in the analysis and characterization of battery materials

Why choose FILAB for battery material analysis and characterization

The battery industry is booming, driven by the energy transition and the growing electrification of transport. To ensure battery performance, safety, and durability, rigorous analysis of their materials is essential.

At FILAB laboratory, we support manufacturers in the characterization and testing of the materials used in batteries, whether lithium-ion, solid-state batteries, or other innovative technologies.

Our expertise covers a range of sectors, including energy, automotive, and electronics, enabling us to support our clients with a wide variety of challenges. Whether for compliance testing or research and development (R&D) projects, we provide tailored support to meet each company’s specific needs.

Our technical resources for battery raw material analysis

GC FID

GC-MS

HPLC-MS and LC-MS

ICP-AES

DSC

CLI

SEM-EDX

TGA

Raman microscopy

Mercury amalgamator

Elemental analyzer

C,H,O,N,S

Laser particle size analysis

Transition Offer: analytical and consulting solution to optimize your environmental impact

FILAB supports manufacturers in their LCA (Life Cycle Assessment) efforts for their products to find environmental optimization solutions thanks to its expertise in chemistry and materials.

  • Choose the right materials from the design stage
  • Reduce your product’s environmental footprint
  • Reduce environmental impact by optimizing the production chain
  • Turn waste into resources

Our FAQ

Why carry out a battery materials analysis?

Battery materials analysis makes it possible to determine their chemical composition, structure, and physicochemical properties. It is essential for developing new generations of batteries, controlling material quality, identifying the source of a failure, or optimizing electrochemical performance.

Which battery materials can be characterized?

A laboratory can analyze all the materials that make up a battery, including:

  • cathode active materials (NMC, NCA, LFP, LMO, etc.),
  • anode materials (graphite, silicon, metallic lithium, etc.),
  • liquid or solid electrolytes,
  • separators,
  • copper or aluminum current collectors,
  • binders, conductive additives, and coatings.
Why characterize a battery’s active materials?

Active materials directly determine battery performance: capacity, energy density, service life, and stability. Their characterization makes it possible to check their composition, crystal structure, morphology, and homogeneity in order to ensure their performance.

Why measure the specific surface area and porosity of materials?

Specific surface area and porosity influence ion exchange, electrolyte diffusion, and the battery’s electrochemical performance. Measuring them helps optimize electrode formulations and manufacturing processes.

Can analysis identify the causes of battery failure?

Yes. Material characterization makes it possible to identify anomalies such as contamination, incorrect chemical composition, degradation of active materials, coating defects, or structural changes that may explain reduced performance or premature failure.

Do the analysis support R&D projects?

Yes. Material characterization is involved throughout research and development projects: selection of new materials, comparison of formulations, optimization of synthesis processes, performance validation, and qualification before industrial-scale production.

Why choose the Filab laboratory to characterize battery materials?

A specialized laboratory has a wide range of complementary analytical techniques to characterize materials at different scales, from chemical composition to microstructure and surface properties. At FILAB laboratory, results are interpreted by experts to support manufacturers in the development, quality control, failure analysis, and optimization of their battery materials.

How do i get a quote from FILAB?

To get a quote, you can contact our teams via our contact form, by phone, or by email.
All you need to do is send us your requirements (material type, desired analysis, any applicable standard, urgency, number of samples, etc.). We will then send you a tailored technical and pricing proposal within 24-48 hours.

What is the typical turnaround time for analysis?

Lead times vary depending on the nature of the analysis and the complexity of the expert assessment project.
However, FILAB is committed to providing fast turnaround times suited to your constraints and industrial urgencies.

The filab advantages
A highly qualified team
A highly qualified team
Responsiveness in responding to and processing requests
Responsiveness in responding to and processing requests
A COFRAC ISO 17025 accredited laboratory
A COFRAC ISO 17025 accredited laboratory
(Staves available on www.cofrac.com - Accreditation number: 1-1793)
A complete analytical facility of 5,200m²
A complete analytical facility of 5,200m²
Tailor-made support
Tailor-made support
Video debriefing available with the expert
Video debriefing available with the expert
Romain Adam Head of R&D Department
Ask for your quote