| Technical Name |
High-Power, High-Safety Lithium-Ion Batteries Powering the Future from Home Energy Storage to High-Speed Mobility |
| Project Operator |
National Synchrotron Radiation Research Center |
| Project Host |
胡芝瑋 |
| Summary |
From home energy storage and smart grids to high-performance mobility and unmanned aerial systems, lithium-ion batteries are powering the future of everyday life. As energy moves faster than ever, critical changes unfold deep within battery materials in fractions of a second. Through operando X-ray characterization, these hidden dynamics can be captured in real time, revealing how next-generation batteries achieve higher power, greater safety, and longer-lasting performance. |
| Scientific Breakthrough |
The innovation lies in making battery operation directly observable. Rather than inferring performance from post-test characterization, operando X-ray techniques capture the evolution of materials as batteries charge and discharge under practical conditions. This real-time insight transforms battery development from a trial-and-error process into a science-driven design approach, enabling faster optimization of high-power, high-safety lithium-ion batteries for next-generation energy and mobility applications. |
| Industrial Applicability |
Adopted in the development of energy storage systems, high-power batteries, and next-generation energy technologies, this platform helps industry identify performance limitations, improve safety, and accelerate product validation. By turning battery operation into directly observable data, it shortens development cycles and speeds the path from innovation to commercialization. |