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Synthesis and superconductivity in yttrium superhydrides under high pressure

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【作者】 王莹莹王奎孙尧马良王彦超邹勃刘广韬周密王洪波

【Author】 Yingying Wang;Kui Wang;Yao Sun;Liang Ma;Yanchao Wang;Bo Zou;Guangtao Liu;Mi Zhou;Hongbo Wang;State Key Laboratory of Superhard Materials, College of Physics, Jilin University;International Center of Computational Method & Software, College of Physics, Jilin University;International Center of Future Science, Jilin University;

【通讯作者】 刘广韬;周密;王洪波;

【机构】 State Key Laboratory of Superhard Materials, College of Physics, Jilin UniversityInternational Center of Computational Method & Software, College of Physics, Jilin UniversityInternational Center of Future Science, Jilin University

【摘要】 Flourishing rare earth superhydrides are a class of recently discovered materials that exhibit near-room-temperature superconductivity at high pressures, ushering in a new era of superconductivity research at high pressures. Yttrium superhydrides drew the most attention among these superhydrides due to their abundance of stoichiometries and excellent superconductivities. Here, we carried out a comprehensive study of yttrium superhydrides in a wide pressure range of 140 GPa–300 GPa. We successfully synthesized a series of superhydrides with the compositions of YH4, YH6, YH7, and YH9, and reported superconducting transition temperatures of 82 K at 167 GPa, 218 K at 165 GPa, 29 K at 162 GPa, and230 K at 300 GPa, respectively, as evidenced by sharp drops in resistance. The structure and superconductivity of YH4 were taken as a representative example and were also examined using x-ray diffraction measurements and the superconductivity suppression under external magnetic fields, respectively. Clathrate YH10, a candidate for room-temperature superconductor, was not synthesized within the study pressure and temperature ranges of up to 300 GPa and 2000 K. The current study established a detailed foundation for future research into room-temperature superconductors in polynary yttrium-based superhydrides.

【Abstract】 Flourishing rare earth superhydrides are a class of recently discovered materials that exhibit near-room-temperature superconductivity at high pressures, ushering in a new era of superconductivity research at high pressures. Yttrium superhydrides drew the most attention among these superhydrides due to their abundance of stoichiometries and excellent superconductivities. Here, we carried out a comprehensive study of yttrium superhydrides in a wide pressure range of 140 GPa–300 GPa. We successfully synthesized a series of superhydrides with the compositions of YH4, YH6, YH7, and YH9, and reported superconducting transition temperatures of 82 K at 167 GPa, 218 K at 165 GPa, 29 K at 162 GPa, and230 K at 300 GPa, respectively, as evidenced by sharp drops in resistance. The structure and superconductivity of YH4 were taken as a representative example and were also examined using x-ray diffraction measurements and the superconductivity suppression under external magnetic fields, respectively. Clathrate YH10, a candidate for room-temperature superconductor, was not synthesized within the study pressure and temperature ranges of up to 300 GPa and 2000 K. The current study established a detailed foundation for future research into room-temperature superconductors in polynary yttrium-based superhydrides.

【关键词】 high pressuresuperhydridesuperconductivity
【Key words】 high pressuresuperhydridesuperconductivity
【基金】 Project supported by the National Key Research and Development Program of China (Grant Nos. 2021YFA1400203 and 2018YFA0305900);the National Natural Science Foundation of China (Grant Nos. 52090024, 11874175, 12074139, 12074138, 11874176, and 12034009);the Strategic Priority Research Program of Chinese Academy of Sciences (Grant No. XDB33000000);Program for JLU Science and Technology Innovative Research Team (JLUSTIRT)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年10期
  • 【分类号】O511.3;TB34
  • 【下载频次】2
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