This inventor holds 3 USPTO granted patents and 1 EPO patent. Top assignee: Massachusetts Institute of Technology. Active years: 2008-2014.
Location History:
- Uppsala, SE (2008)
- Vasteras, SE (2012 - 2014)
Company Filing History:
Years Active: 2008-2014
Title: Innovative Contributions of Anna M. Andersson
Introduction
Anna M. Andersson, an accomplished inventor based in Vasteras, Sweden, has made significant strides in the field of electrochemical devices. With three patents to her name, Andersson is recognized for her groundbreaking work on conductive lithium storage electrodes. These innovations show great promise in enhancing the performance of storage batteries.
Latest Patents
Among her latest patents, Andersson introduced a compound with a unique composition, A(M'M'')(XD) and related forms, which can be used in electrochemical devices. The innovative compound includes various alkali metals, transition metals, and elements such as phosphorus and sulfur, which collectively contribute to its effectiveness in energy storage solutions. The conductivity of her developed compound can reach at least about 10 S/cm at 27 °C, making it suitable for high-performance batteries with a gravimetric capacity of at least about 80 mAh/g.
Career Highlights
Anna is currently associated with the Massachusetts Institute of Technology, where she continues her research and development in innovative technologies. Her contributions to the field have garnered attention not just for their scientific merit but also for their practical application in developing efficient energy storage systems.
Collaborations
Throughout her career, Andersson has collaborated with esteemed colleagues such as Yet-Ming Chiang and Sung-Yoon Chung, enhancing her research initiatives. These collaborations exemplify the synergy within the scientific community, bringing together various expertise to advance in innovative technologies.
Conclusion
Anna M. Andersson stands as a notable figure in the realm of innovation, particularly in the development of advanced materials for energy systems. Her work paves the way for future advancements in battery technologies, reinforcing the vital role of research in creating sustainable energy solutions.
