Webinar
21.01.2027
From Batteries to Nuclear Fuels: STA for Advanced Energy Materials
English
Speaker: Andrew Gillen

Thermal behavior is critical to the safety and performance of battery materials and nuclear-related applications. This webinar demonstrates how STA can be used to evaluate stability, reactivity, and material compatibility in relation to process requirements and safety considerations.
The session covers specialized configurations, including glovebox and skimmer systems for air- or moisture-sensitive, toxic, and reactive samples, as well as application examples involving fuels and catalysts.
Using examples from lithium-ion battery materials, uranium oxide, propulsion fuels, and catalytic systems, we will highlight how STA data can support risk assessments, process control, and material design.
This webinar is for you if you work with reactive or safety-critical materials, investigate Thermal runawayA thermal runaway is the situation where a chemical reactor is out of control with respect to temperature and/or pressure production caused by the chemical reaction itself. Simulation of a thermal runaway is usually carried out using a calorimeter device according to accelerated rate calorimetry (ARC).thermal runaway or Decomposition reactionA decomposition reaction is a thermally induced reaction of a chemical compound forming solid and/or gaseous products. decomposition processes, or require STA workflows under controlled atmospheres.
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