Kaohsiung, Taiwan

Sheng-Chun Fu

This inventor holds 1 USPTO granted patent. Top assignee: Industrial Technology Research Institute. Active years: 2026.


Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2026

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1 patent (USPTO):Explore Patents

Title: Innovations of Sheng-Chun Fu in Scandium Metal Preparation

Introduction

Sheng-Chun Fu is a notable inventor based in Kaohsiung, Taiwan. He has made significant contributions to the field of materials science, particularly in the preparation of scandium metal. His innovative methods have the potential to impact various industries that utilize scandium.

Latest Patents

Sheng-Chun Fu holds a patent for a method of preparing scandium metal. This method involves mixing aluminum powder and scandium fluoride powder to create a mixture. The mixture is then heated in a vacuum environment, allowing the aluminum powder to react with the scandium fluoride powder. This reaction produces aluminum fluoride gas and scandium metal. The aluminum fluoride gas is subsequently removed by evacuation, resulting in the acquisition of pure scandium metal. This patent showcases his expertise in chemical processes and material synthesis.

Career Highlights

Sheng-Chun Fu is affiliated with the Industrial Technology Research Institute, where he conducts research and development in advanced materials. His work has been instrumental in enhancing the efficiency and effectiveness of scandium metal production. With a focus on innovation, he continues to explore new methodologies that can lead to improved industrial applications.

Collaborations

Sheng-Chun Fu collaborates with his coworker, Yang-Sheng Huang, to further advance their research initiatives. Their combined efforts aim to push the boundaries of material science and develop new technologies that can benefit various sectors.

Conclusion

Sheng-Chun Fu's contributions to the preparation of scandium metal highlight his innovative spirit and dedication to advancing material science. His patented method represents a significant step forward in the efficient production of this valuable metal.

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