Company Filing History:
Years Active: 2022-2024
Title: Innovations of Yongmok Cho in Lithium Battery Technology
Introduction
Yongmok Cho is a prominent inventor based in Yongin-si, South Korea. He has made significant contributions to the field of rechargeable lithium batteries, holding two patents that showcase his innovative approach to battery technology. His work is vital in advancing energy storage solutions, which are essential for various applications in modern technology.
Latest Patents
Yongmok Cho's latest patents focus on a positive active material for rechargeable lithium batteries. This innovative material includes a core with a layered structure and a surface layer that contains an oxide. The oxide comprises at least one first element and one second element, each selected from a group that includes Ti, Zr, F, Mg, Al, and P. The first element is present in an amount of about 0.01 mol % to about 0.2 mol % based on the total weight of the positive active material, while the second element is included in an amount of about 0.02 mol % to about 0.5 mol %. This positive active material is crucial for enhancing the performance of rechargeable lithium batteries.
Career Highlights
Yongmok Cho is currently employed at Samsung SDI Co., Inc., where he continues to develop innovative battery technologies. His work at Samsung SDI has positioned him as a key player in the advancement of energy storage solutions. His contributions are recognized within the industry, and he is regarded as an expert in his field.
Collaborations
Yongmok Cho collaborates with talented individuals such as Young-Hun Lee and Hyunjei Chung. These collaborations enhance the innovative capacity of their projects and contribute to the development of cutting-edge technologies in the battery sector.
Conclusion
Yongmok Cho's work in the field of rechargeable lithium batteries exemplifies the importance of innovation in energy storage technology. His patents and contributions at Samsung SDI Co., Inc. highlight his role as a leading inventor in this critical area.