Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor

The recent discovery of H_{3}S and LaH_{10} superconductors with record high superconducting transition temperatures T_{c} at high pressure has fueled the search for room-temperature superconductivity in the compressed superhydrides. Here we introduce a new class of high T_{c} hydrides with a novel...

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Main Authors: Xie, Hui, Yao, Yansun, Feng, Xiaolei, Duan, Defang, Song, Hao, Zhang, Zihan, Jiang, Shuqing, Redfern, Simon Anthony Turner, Kresin, Vladimir Z., Pickard, Chris J., Cui, Tian
Other Authors: Asian School of the Environment
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/146269
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1462692023-02-28T16:39:29Z Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor Xie, Hui Yao, Yansun Feng, Xiaolei Duan, Defang Song, Hao Zhang, Zihan Jiang, Shuqing Redfern, Simon Anthony Turner Kresin, Vladimir Z. Pickard, Chris J. Cui, Tian Asian School of the Environment Science::General Hafnium Conventional Superconductor The recent discovery of H_{3}S and LaH_{10} superconductors with record high superconducting transition temperatures T_{c} at high pressure has fueled the search for room-temperature superconductivity in the compressed superhydrides. Here we introduce a new class of high T_{c} hydrides with a novel structure and unusual properties. We predict the existence of an unprecedented hexagonal HfH_{10}, with remarkably high value of T_{c} (around 213-234 K) at 250 GPa. As concerns the novel structure, the H ions in HfH_{10} are arranged in clusters to form a planar "pentagraphenelike" sublattice. The layered arrangement of these planar units is entirely different from the covalent sixfold cubic structure in H_{3}S and clathratelike structure in LaH_{10}. The Hf atom acts as a precompressor and electron donor to the hydrogen sublattice. This pentagraphenelike H_{10} structure is also found in ZrH_{10}, ScH_{10}, and LuH_{10} at high pressure, each material showing a high T_{c} ranging from 134 to 220 K. Our study of dense superhydrides with pentagraphenelike layered structures opens the door to the exploration of a new class of high T_{c} superconductors. Published version 2021-02-04T08:27:41Z 2021-02-04T08:27:41Z 2020 Journal Article Xie, H., Yao, Y., Feng, X., Duan, D., Song, H., Zhang, Z., . . . Cui, T. (2020). Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor. Physical Review Letters, 125(21), 217001-. doi:10.1103/PhysRevLett.125.217001 0031-9007 https://hdl.handle.net/10356/146269 10.1103/PhysRevLett.125.217001 33275012 2-s2.0-85097297665 21 125 en Physical Review Letters © 2020 American Physical Society. All rights reserved. This paper was published in Physical Review Letters and is made available with permission of American Physical Society. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::General
Hafnium
Conventional Superconductor
spellingShingle Science::General
Hafnium
Conventional Superconductor
Xie, Hui
Yao, Yansun
Feng, Xiaolei
Duan, Defang
Song, Hao
Zhang, Zihan
Jiang, Shuqing
Redfern, Simon Anthony Turner
Kresin, Vladimir Z.
Pickard, Chris J.
Cui, Tian
Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
description The recent discovery of H_{3}S and LaH_{10} superconductors with record high superconducting transition temperatures T_{c} at high pressure has fueled the search for room-temperature superconductivity in the compressed superhydrides. Here we introduce a new class of high T_{c} hydrides with a novel structure and unusual properties. We predict the existence of an unprecedented hexagonal HfH_{10}, with remarkably high value of T_{c} (around 213-234 K) at 250 GPa. As concerns the novel structure, the H ions in HfH_{10} are arranged in clusters to form a planar "pentagraphenelike" sublattice. The layered arrangement of these planar units is entirely different from the covalent sixfold cubic structure in H_{3}S and clathratelike structure in LaH_{10}. The Hf atom acts as a precompressor and electron donor to the hydrogen sublattice. This pentagraphenelike H_{10} structure is also found in ZrH_{10}, ScH_{10}, and LuH_{10} at high pressure, each material showing a high T_{c} ranging from 134 to 220 K. Our study of dense superhydrides with pentagraphenelike layered structures opens the door to the exploration of a new class of high T_{c} superconductors.
author2 Asian School of the Environment
author_facet Asian School of the Environment
Xie, Hui
Yao, Yansun
Feng, Xiaolei
Duan, Defang
Song, Hao
Zhang, Zihan
Jiang, Shuqing
Redfern, Simon Anthony Turner
Kresin, Vladimir Z.
Pickard, Chris J.
Cui, Tian
format Article
author Xie, Hui
Yao, Yansun
Feng, Xiaolei
Duan, Defang
Song, Hao
Zhang, Zihan
Jiang, Shuqing
Redfern, Simon Anthony Turner
Kresin, Vladimir Z.
Pickard, Chris J.
Cui, Tian
author_sort Xie, Hui
title Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
title_short Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
title_full Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
title_fullStr Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
title_full_unstemmed Hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
title_sort hydrogen pentagraphenelike structure stabilized by hafnium : a high-temperature conventional superconductor
publishDate 2021
url https://hdl.handle.net/10356/146269
_version_ 1759853066864033792