Abstract
As the demand for high-performance energy storage systems grows, ensuring the safety and reliability of lithium-ion batteries (LIBs) becomes increasingly critical. This keynote presentation aims to provide a holistic exploration of safety considerations, from individual cells to integrated battery systems.
The discussion will begin with an overview of the fundamental safety challenges associated with LIB cells, focusing on the complexities of cell chemistry, thermal management, and failure modes. Emphasis will be placed on understanding the inherent risks within the battery cells and the mitigation strategies designed to address these vulnerabilities.
Moving beyond individual cells, the presentation will delve into the complexities of assembling these cells into larger battery systems. Integration introduces additional safety considerations, such as thermal runaway propagation, electrical management, and overall system resilience. Attendees will gain insights into methodologies to ensure the safety and functionality of LIB systems across diverse applications.
Furthermore, the presentation will address how external factors, such as environmental conditions and usage patterns, influence the overall safety and longevity of LIBs. This comprehensive examination aims to foster a deeper understanding of the multifaceted challenges associated with lithium-ion battery safety.
In conclusion, the presentation will offer a forward-looking perspective on emerging technologies and best practices in lithium-ion battery safety by bridging the gap from individual cells to integrated systems. This talk aims to contribute to the collective knowledge that shapes the future of safe and efficient energy storage solutions.
The discussion will begin with an overview of the fundamental safety challenges associated with LIB cells, focusing on the complexities of cell chemistry, thermal management, and failure modes. Emphasis will be placed on understanding the inherent risks within the battery cells and the mitigation strategies designed to address these vulnerabilities.
Moving beyond individual cells, the presentation will delve into the complexities of assembling these cells into larger battery systems. Integration introduces additional safety considerations, such as thermal runaway propagation, electrical management, and overall system resilience. Attendees will gain insights into methodologies to ensure the safety and functionality of LIB systems across diverse applications.
Furthermore, the presentation will address how external factors, such as environmental conditions and usage patterns, influence the overall safety and longevity of LIBs. This comprehensive examination aims to foster a deeper understanding of the multifaceted challenges associated with lithium-ion battery safety.
In conclusion, the presentation will offer a forward-looking perspective on emerging technologies and best practices in lithium-ion battery safety by bridging the gap from individual cells to integrated systems. This talk aims to contribute to the collective knowledge that shapes the future of safe and efficient energy storage solutions.
| Original language | English |
|---|---|
| Journal | ECS Meeting Abstracts |
| DOIs | |
| Publication status | Published - 7 Jul 2026 |
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