Superconductivity at 117 K in H-doped diamond
暂无分享,去创建一个
Y. Liu | H. Ding | Xiao-Jia Chen | Rui Niu | G. Zhong | Yu-jie Feng | Chun-lei Yang | Hai-qing Lin | L. Wu
[1] Katerina P. Hilleke,et al. Conventional High-Temperature Superconductivity in Metallic, Covalently Bonded, Binary-Guest C-B Clathrates. , 2022, Journal of the American Chemical Society.
[2] S. Mozaffari,et al. Superconductivity up to 243 K in the yttrium-hydrogen system under high pressure , 2021, Nature Communications.
[3] J. Bass,et al. Superconductivity above 200 K discovered in superhydrides of calcium , 2021, Nature Communications.
[4] M. Calandra,et al. Anomalous High‐Temperature Superconductivity in YH6 , 2021, Advanced materials.
[5] A. Oganov,et al. Superconductivity at 253 K in lanthanum–yttrium ternary hydrides , 2020, Materials Today.
[6] Jianyong Chen. Enhanced Electron–Phonon Coupling and Superconductivity in Two-dimensional BC2N via Lithium Deposition: a First-Principles Investigation , 2020, Journal of Superconductivity and Novel Magnetism.
[7] D. Graf,et al. Superconductivity at 250 K in lanthanum hydride under high pressures , 2018, Nature.
[8] A. P. Drozdov,et al. Conventional superconductivity at 203 kelvin at high pressures in the sulfur hydride system , 2015, Nature.
[9] Jian Lv,et al. CALYPSO: A method for crystal structure prediction , 2012, Comput. Phys. Commun..
[10] Jinlong Yang,et al. A first-principles prediction of two-dimensional superconductivity in pristine B₂C single layers. , 2012, Nanoscale.
[11] M. Aftabuzzaman,et al. Superconductivity in Diamond-like BC 3 Phase , 2010 .
[12] Gustavo E. Scuseria,et al. Erratum: “Hybrid functionals based on a screened Coulomb potential” [J. Chem. Phys. 118, 8207 (2003)] , 2006 .
[13] V. Sidorov,et al. Superconductivity in diamond , 2004, Nature.
[14] P. May. Diamond thin films: a 21st-century material , 2000, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.