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Volume 7 Issue 6
Nov.  2022
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Article Contents
Mao Ho-Kwang. Hydrogen and related matter in the pressure dimension[J]. Matter and Radiation at Extremes, 2022, 7(6): 063001. doi: 10.1063/5.0130627
Citation: Mao Ho-Kwang. Hydrogen and related matter in the pressure dimension[J]. Matter and Radiation at Extremes, 2022, 7(6): 063001. doi: 10.1063/5.0130627

Hydrogen and related matter in the pressure dimension

doi: 10.1063/5.0130627
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  • Corresponding author: a)Author to whom correspondence should be addressed: maohk@hpstar.ac.cn. Tel.: +(86) 183-2111-7482
  • Received Date: 2022-10-13
  • Accepted Date: 2022-10-16
  • Available Online: 2022-11-01
  • Publish Date: 2022-11-01
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  • [1]
    E. Gregoryanz, C. Ji, P. Dalladay-Simpson, B. Li, R. T. Howie, and H.-K. Mao, “Everything you always wanted to know about metallic hydrogen but were afraid to ask,” Matter Radiat. Extremes 5, 038101 (2020).10.1063/5.0002104
    [2]
    J. Lv, Y. Sun, H. Liu, and Y. Ma, “Theory-orientated discovery of high-temperature superconductors in superhydrides stabilized under high pressure,” Matter Radiat. Extremes 5, 068101 (2020).10.1063/5.0033232
    [3]
    X. Zhang, Y. Zhao, F. Li, and G. Yang, “Pressure-induced hydride superconductors above 200 K,” Matter Radiat. Extremes 6, 068201 (2021).10.1063/5.0065287
    [4]
    Q. Hu and H.-k. Mao, “Role of hydrogen and proton transportation in Earth’s deep mantle,” Matter Radiat. Extremes 6, 068101 (2021).10.1063/5.0069643
    [5]
    T. Meier, A. Aslandukova, F. Trybel, D. Laniel, T. Ishii, S. Khandarkhaeva, N. Dubrovinskaia, and L. Dubrovinsky, “In situ high-pressure nuclear magnetic resonance crystallography in one and two dimensions,” Matter Radiat. Extremes 6, 068402 (2021).10.1063/5.0065879
    [6]
    L. Kong and G. Liu, “Synchrotron-based infrared microspectroscopy under high pressure: An introduction,” Matter Radiat. Extremes 6, 068202 (2021).10.1063/5.0071856
    [7]
    Q. Hu and H.-k. Mao, “Born’s valence force-field model for diamond at terapascals: Validity and implications for the primary pressure scale,” Matter Radiat. Extremes 6, 068403 (2021).10.1063/5.0069479
    [8]
    L. Zhang, H. Y. Geng, and Q. Wu, “Prediction of anomalous LA-TA splitting in electrides,” Matter Radiat. Extremes 6, 038403 (2021).10.1063/5.0043276
    [9]
    M. Chen, S. Guo, K. Bu, S. Lee, H. Luo, Y. Wang, B. Liu, Z. Yan, H. Dong, W. Yang, B. Ma, and X. Lü, “Pressure-induced robust emission in a zero-dimensional hybrid metal halide (C9NH20)6Pb3Br12,” Matter Radiat. Extremes 6, 058401 (2021).10.1063/5.0058821
    [10]
    B. Wu, L. Lei, F. Zhang, Q. Tang, S. Liu, M. Pu, D. He, Y. Xia, L. Fang, H. Ohfuji, and T. Irifune, “Pressure-induced disordering of site occupation in iron–nickel nitrides,” Matter Radiat. Extremes 6, 038401 (2021).10.1063/5.0040041
    [11]
    X. Chen, H. Lou, Z. Zeng, B. Cheng, X. Zhang, Y. Liu, D. Xu, K. Yang, and Q. Zeng, “Structural transitions of 4:1 methanol–ethanol mixture and silicone oil under high pressure,” Matter Radiat. Extremes 6, 038402 (2021).10.1063/5.0044893
    [12]
    T. Zhang, Y. Wang, J. Xian, S. Wang, J. Fang, S. Duan, X. Gao, H. Song, and H. Liu, “Effect of the projector augmented wave potentials on the simulation of thermodynamic properties of vanadium,” Matter Radiat. Extremes 6, 068401 (2021).10.1063/5.0059360
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