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Strength-dependent Transition of Graphite Under Shock Condition Resolved by First Principles

Materials Science 2023-11-16 v1

Abstract

The shock strength dependent formation of diamond represents one of the most intriguing questions in graphite research. Using ab initio DFT-trained carbon GNN model, we observe a strength-dependent graphite transition under shock. The poor sliding caused by scarce sliding time under high-strength shock forms hexagonal diamond with an orientation of (001)G//(100)HD+[010]G//[010]HD; under low-strength shock, cubic diamond forms after enough sliding time, unveiling the strength-dependent graphite transition. We provide computational evidence of the strength-dependent graphite transition from first principles, clarifying the long-term shock-induced hexagonal formation and structural strength-dependent trend source.

Cite

@article{arxiv.2311.08805,
  title  = {Strength-dependent Transition of Graphite Under Shock Condition Resolved by First Principles},
  author = {Gu-Wen Chen and Liang Xu and Yao-Ming Li and Zhi-Pan Liu and Sheng-Cai Zhu},
  journal= {arXiv preprint arXiv:2311.08805},
  year   = {2023}
}
R2 v1 2026-06-28T13:21:50.409Z