Qin, A.; Chen, S.-B.; Tu, L.-Z.; Wang, J.-H.; Yan, W.-J.; Gao, T.; Gao, K.-M.; Zhao, J.
Unveiling Superior Fracture Toughness in MnCoSb Half-Heusler Alloy: A First-Principles Guide for Designing Damage-Tolerant Functional Materials. Molecules 2026, 31, 1994.
https://doi.org/10.3390/molecules31121994
AMA Style
Qin A, Chen S-B, Tu L-Z, Wang J-H, Yan W-J, Gao T, Gao K-M, Zhao J.
Unveiling Superior Fracture Toughness in MnCoSb Half-Heusler Alloy: A First-Principles Guide for Designing Damage-Tolerant Functional Materials. Molecules. 2026; 31(12):1994.
https://doi.org/10.3390/molecules31121994
Chicago/Turabian Style
Qin, Ai, Shao-Bo Chen, Lin-Zi Tu, Jia-Hao Wang, Wan-Jun Yan, Tinghong Gao, Kuang-Min Gao, and Jing Zhao.
2026. "Unveiling Superior Fracture Toughness in MnCoSb Half-Heusler Alloy: A First-Principles Guide for Designing Damage-Tolerant Functional Materials" Molecules 31, no. 12: 1994.
https://doi.org/10.3390/molecules31121994
APA Style
Qin, A., Chen, S.-B., Tu, L.-Z., Wang, J.-H., Yan, W.-J., Gao, T., Gao, K.-M., & Zhao, J.
(2026). Unveiling Superior Fracture Toughness in MnCoSb Half-Heusler Alloy: A First-Principles Guide for Designing Damage-Tolerant Functional Materials. Molecules, 31(12), 1994.
https://doi.org/10.3390/molecules31121994