Why you should not miss this training?
This training will discuss the processes use to manufacture that important part of a battery which is known as separators, also will explain you different important aspects of Lithium-ion battery including:
- Novel materials and processes that are being used
- Treating the battery components in combination with each other
- Modification of existing products, current unmet needs for lithium - ion battery separators
In addition, developments that have occurred recently in these commercial processes will be presented. Recent new developments will also be mentioned during the training. The training will highlight battery separators as a critical yet often overlooked battery component that is essential to meet further demands. It will focus on treating the battery components in combination with each other rather than as individual materials.
Who should attend this training?
Highly recommended training for chemists and chemical engineers that are focused on developing lithium - ion batteries in both universities and industry. Also, researchers and workers that are specifically working on lithium - ion battery separators will find the information that is presented in the training to be very useful. In addition, battery researchers and developers that work in industry will greatly benefit from the information that is provided in this training. The information can be used as help guide to plan for further work in the various areas that are needed for the implementation of lithium - ion batteries into emerging applications.
Training Outline
- Separator Background
- Technologies for Separator Production
- Dry Process
- Wet Process
- Other Approaches
- Properties of Separators
- Current Trends in Separators
- Unmet Needs
- Conclusions and Areas for Future Work
FAQ
- Why are lithium-ion battery separators so critical in electric mobility?
Because separators directly influence ion transport, safety, thermal stability, and battery reliability, even though they are often less visible than electrodes or electrolytes. - What makes separator development challenging for lithium-ion batteries?
Separator performance depends on material selection, pore structure, manufacturing process, thermal behavior, and how the separator interacts with other battery components. - Why is it risky to evaluate battery components separately?
Because separator performance cannot be fully understood without considering its interaction with electrodes, electrolyte, cell design, and operating conditions. - What are the key technology routes used for separator production?
Separator production commonly involves dry process, wet process, and other emerging approaches, each with different performance and manufacturing implications. - Why are new separator technologies important for electric mobility?
Electric mobility demands safer, higher-performing, and more reliable batteries, making separator innovation essential for future battery performance. - Who should attend this training?
This training is useful for chemists, chemical engineers, lithium-ion battery researchers, separator specialists, and battery developers working in universities or industry.
