Yeosu-si, South Korea

Tae Ryang Kim



Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: Innovations of Tae Ryang Kim in Electrode Material Synthesis

Introduction

Tae Ryang Kim is an accomplished inventor based in Yeosu-si, South Korea. He has made significant contributions to the field of electrode materials, particularly through his innovative synthesis methods. His work focuses on enhancing the properties of electrode materials for various applications.

Latest Patents

Tae Ryang Kim holds a patent for a "Method for synthesizing electrode material using polyol process." This patent describes a synthesis method that involves preparing a mixed solution by combining a transition metal compound, a polyacid anionic compound, and a lithium compound with a polyol solvent. The resultant product is obtained by reacting the mixed solution in a heating apparatus. This method allows for the synthesis of electrode materials with crystallinity, such as olivine or nasicon structures, at low temperatures without the need for heat treatment. The nanoelectrode material produced exhibits high crystallinity, uniform particle size, and a diameter ranging from several nanometers to several micrometers. Additionally, the electrode material demonstrates high electrochemical stability.

Career Highlights

Tae Ryang Kim is affiliated with Chonnam National University, where he continues to advance research in the field of materials science. His innovative approaches have garnered attention in academic and industrial circles alike.

Collaborations

Tae Ryang Kim has collaborated with notable colleagues, including Jae Kook Kim and Dong Han Kim. Their joint efforts contribute to the ongoing research and development of advanced materials.

Conclusion

Tae Ryang Kim's work in synthesizing electrode materials using the polyol process represents a significant advancement in the field. His innovative methods and dedication to research continue to impact the development of high-performance materials.

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