这种超硬、超强且导电的全碳基复合材料的综合性能优于目前已知的所有导电陶瓷和碳碳复合材料在航空航天、微纳米电子器件等国家重大工程领域具有潜在的应用前景。该研究工作同时揭示了非晶碳向金刚石相变的机制为进一步探索通过碳材料相变过程来合成高性能新材料提供了重要的启示。
Translation:
This all-carbon composite material, which is superhard, superstrong, and electrically conductive, has comprehensive properties that are superior to all known conductive ceramics and carbon/carbon composites. It has potential applications in major national projects such as aerospace and micro-nano electronic devices. The research also revealed the mechanism of the amorphous carbon to diamond phase transition, providing important insights for further exploration of high-performance new materials synthesized through carbon material phase transition processes.
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