Anode
Electrode
Optimisation

Following the discovery of a promising new anode material, the focus will shift to improving material stability, enhancing electrode-level performance and the scalability of production.

The illumionONE is the perfect analytical tool for materials optimisation. It pinpoints in real time the factors that limit performance and stability during battery operation. By revealing exactly what needs to be improved, it enables targeted – and therefore accelerated – materials optimisation.

Optimise anode materials with illumionONE

Breakthrough battery analytics - Unlock faster development and improved material performance with charge photometry

  • Pinpoint failure Identify rate limitations and electrode degradation before they impact performance
  • Optimise formulations Achieve uniform charging and enhanced particle stability
  • Predict lifespan Detect early performance degradation and target vulnerable regions for improvement
  • Accelerate development Cut months from R&D cycles with real-time performance analytics
  • Maximise ROI Extend battery life and reliability with data-driven insights

Boost battery longevity

Track and understand battery material degradation. Identify patterns, anticipate problems early to maintain peak performance over an extended lifespan.

The Challenge

Batteries suffer from performance decline over time, especially when rapidly charged. Battery developers may struggle to create long-lasting formulations because they lack visibility into when and why particles inside electrode materials crack and degrade during battery cycling.

The Solution

illumionONE solves this by enabling researchers to watch battery materials in real-time during charging cycles, revealing exactly when particles begin to crack and how their structure changes over time. With this critical information, battery developers can create improved formulations that resist cracking, maintain stability, and extend battery life — even under demanding fast-charging conditions. This aids the development of batteries that last longer and perform better.

Looking to enhance anode performance?

Contact us to explore solutions for understanding the relationship between charging rate, material structure and degradation to create batteries that charge faster and last longer