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1. Nuclear industry applications: can be used for nuclear reactor control rod materials and radiation shielding materials.
2. Optical materials: As an additive of special optical glass, it can effectively improve the refractive index and dispersion performance of glass.
3. Functional materials: used for the preparation of samarium-doped fluorescent materials and magnetic materials, with potential applications in display technology and data storage.
4. Scientific research field: As an important precursor in rare earth chemistry research, it is used to synthesize new functional materials.
1. Nuclear industry applications: can be used for nuclear reactor control rod materials and radiation shielding materials.
2. Optical materials: As an additive of special optical glass, it can effectively improve the refractive index and dispersion performance of glass.
3. Functional materials: used for the preparation of samarium-doped fluorescent materials and magnetic materials, with potential applications in display technology and data storage.
4. Scientific research field: As an important precursor in rare earth chemistry research, it is used to synthesize new functional materials.
The 2nd China (Baotou) Rare Earth Permanent Magnet Motor and Rare Earth High end Application Exhibition 2024 will be held from August 7th to 9th at the Baotou International Convention and Exhibition Center, in conjunction with the 16th China Baotou Rare Earth Industry Forum, to seek innovative devel
Recently, with outstanding performance in scientific research and innovation capabilities and market competitiveness, the company has been successfully selected for the first batch of planned technology-based small and medium-sized enterprises in Inner Mongolia for 2024. Since its establishment in 2
Our company is committed to the development and application of rare earth new materials in the field of new energy batteries, in line with the trend of the national rare earth industry developing towards "high, precision, and cutting-edge" rare earth functional materials. We aim to promote the verti