Chongqing, China

Yuchong Ding


Average Co-Inventor Count = 1.6

ph-index = 1


Company Filing History:


Years Active: 2023-2024

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2 patents (USPTO):Explore Patents

Title: Yuchong Ding: Innovator in Scintillation Crystal Technology

Introduction

Yuchong Ding is a prominent inventor based in Chongqing, China. He has made significant contributions to the field of scintillation crystal technology, holding two patents that enhance the performance of these materials. His work focuses on improving luminescence uniformity and reducing afterglow in scintillation crystals.

Latest Patents

Yuchong Ding's latest patents include a method for increasing luminescence uniformity and reducing afterglow of Ce-doped gadolinium-aluminum-gallium garnet structure scintillation crystals. This patent describes a method where Sc ions are doped into the crystal material, optimizing the energy resolution and reducing afterglow intensity. The general formula for the Ce-doped structure is {GdScCeMe}[Al]O, with specific parameters for the composition. Another notable patent is for a device and method for synthesizing gallium-containing garnet-structured scintillator polycrystalline material. This invention includes a specialized synthesis chamber and heating devices that facilitate the melting of raw materials to create high-quality scintillator materials.

Career Highlights

Yuchong Ding is affiliated with the China Electronics Technology Group Corporation No. 26 Research Institute. His work at this institution has allowed him to focus on advanced materials and their applications in various technologies. His innovative approaches have positioned him as a key figure in the development of scintillation materials.

Collaborations

Yuchong Ding collaborates with notable colleagues such as Jingjing Qu and Qiang Wang. Their combined expertise contributes to the advancement of research and development in scintillation technology.

Conclusion

Yuchong Ding's contributions to scintillation crystal technology through his patents and research have made a significant impact in the field. His innovative methods and collaborative efforts continue to push the boundaries of material science.

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