Seoul, South Korea

Jae-Suk Kim


Average Co-Inventor Count = 9.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: Inventor Jae-Suk Kim: Innovating Crystal Growth Techniques

Introduction: Jae-Suk Kim, a prominent inventor based in Seoul, South Korea, has made significant contributions in the field of materials science. With a focus on the innovation of crystal growth methods, he has been instrumental in advancing the production processes for barium titanate and its solid solutions.

Latest Patents: Jae-Suk Kim holds a patent for a "Method for Single Crystal Growth of Barium Titanate and Barium Titanate Solid Solution." This invention addresses the challenges associated with growing single crystals of barium titanate (BaTiO) and solid solutions. The patented method facilitates primary and secondary abnormal grain growth by employing a heat-treatment process that is both cost-effective and efficient. Importantly, it allows for continued crystal growth at slightly below the critical temperature where secondary abnormal grain growth begins, optimizing the production of these materials.

Career Highlights: Currently, Jae-Suk Kim is associated with Ceracomp Co., Ltd., where he applies his expertise in crystallography and materials engineering. His innovative approach not only enhances the quality of barium titanate crystals but also contributes to the broader field of materials science. His work has the potential to influence various applications in electronics and ceramics.

Collaborations: Throughout his career, Jae-Suk Kim has collaborated with notable colleagues, including Ho-Yong Lee and Jong-Hong Lee. These partnerships are crucial as they allow for the exchange of ideas and the collective effort towards developing more effective methods in crystal growth.

Conclusion: Jae-Suk Kim represents a notable figure in the realm of innovation, specifically in the development of techniques for single crystal growth. His patent serves as a testament to the advancements being made in materials science, particularly regarding barium titanate, and highlights the importance of collaboration in reaching new scientific frontiers.

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