In the research of High Purity Silicon Nitride, scientists continue to explore the relationship between its structure and performance and methods of performance optimization. They improve the mechanical properties, thermal conductivity and electrical properties of silicon nitride by regulating the preparation process, changing the material structure and adding appropriate amounts of impurities. Some new silicon nitride materials, such as nano-silicon nitride, multi-phase silicon nitride and silicon nitride thin films, have also been widely researched and applied.
In addition, the application of High Purity Silicon Nitride in the energy field has also attracted much attention. By changing the structure of silicon nitride and adding appropriate amounts of impurities, researchers have shown excellent performance in lithium-ion batteries, supercapacitors and photocatalysis, providing new possibilities for energy storage and conversion.
| Si3N4 | N | O | C | |||
| 80~90 | 32~38 | 0.25 | 1.5 | 0.3 | 0.25 | 0.25 |
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