Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover

Up to now, all iron-based high-T c superconductors contain a square iron lattice. Here, Wang et al. report the observation of superconductivity in an iron honeycomb lattice accompanied with pressure-driven spin-crossover, in-plane lattice collapse and insulator-metal transition.

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Autores principales: Yonggang Wang, Jianjun Ying, Zhengyang Zhou, Junliang Sun, Ting Wen, Yannan Zhou, Nana Li, Qian Zhang, Fei Han, Yuming Xiao, Paul Chow, Wenge Yang, Viktor V. Struzhkin, Yusheng Zhao, Ho-kwang Mao
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/035f021bda754acbb5d59395cd3a5ef9
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spelling oai:doaj.org-article:035f021bda754acbb5d59395cd3a5ef92021-12-02T15:34:45ZEmergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover10.1038/s41467-018-04326-12041-1723https://doaj.org/article/035f021bda754acbb5d59395cd3a5ef92018-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04326-1https://doaj.org/toc/2041-1723Up to now, all iron-based high-T c superconductors contain a square iron lattice. Here, Wang et al. report the observation of superconductivity in an iron honeycomb lattice accompanied with pressure-driven spin-crossover, in-plane lattice collapse and insulator-metal transition.Yonggang WangJianjun YingZhengyang ZhouJunliang SunTing WenYannan ZhouNana LiQian ZhangFei HanYuming XiaoPaul ChowWenge YangViktor V. StruzhkinYusheng ZhaoHo-kwang MaoNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-7 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yonggang Wang
Jianjun Ying
Zhengyang Zhou
Junliang Sun
Ting Wen
Yannan Zhou
Nana Li
Qian Zhang
Fei Han
Yuming Xiao
Paul Chow
Wenge Yang
Viktor V. Struzhkin
Yusheng Zhao
Ho-kwang Mao
Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
description Up to now, all iron-based high-T c superconductors contain a square iron lattice. Here, Wang et al. report the observation of superconductivity in an iron honeycomb lattice accompanied with pressure-driven spin-crossover, in-plane lattice collapse and insulator-metal transition.
format article
author Yonggang Wang
Jianjun Ying
Zhengyang Zhou
Junliang Sun
Ting Wen
Yannan Zhou
Nana Li
Qian Zhang
Fei Han
Yuming Xiao
Paul Chow
Wenge Yang
Viktor V. Struzhkin
Yusheng Zhao
Ho-kwang Mao
author_facet Yonggang Wang
Jianjun Ying
Zhengyang Zhou
Junliang Sun
Ting Wen
Yannan Zhou
Nana Li
Qian Zhang
Fei Han
Yuming Xiao
Paul Chow
Wenge Yang
Viktor V. Struzhkin
Yusheng Zhao
Ho-kwang Mao
author_sort Yonggang Wang
title Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
title_short Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
title_full Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
title_fullStr Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
title_full_unstemmed Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
title_sort emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/035f021bda754acbb5d59395cd3a5ef9
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