Search Results - "Yuan, Dongna"

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  1. 1

    Common electronic origin of superconductivity in (Li,Fe)OHFeSe bulk superconductor and single-layer FeSe/SrTiO3 films by Zhao, Lin, Liang, Aiji, Yuan, Dongna, Hu, Yong, Liu, Defa, Huang, Jianwei, He, Shaolong, Shen, Bing, Xu, Yu, Liu, Xu, Yu, Li, Liu, Guodong, Zhou, Huaxue, Huang, Yulong, Dong, Xiaoli, Zhou, Fang, Liu, Kai, Lu, Zhongyi, Zhao, Zhongxian, Chen, Chuangtian, Xu, Zuyan, Zhou, X. J.

    Published in Nature communications (08-02-2016)
    “…The mechanism of high-temperature superconductivity in the iron-based superconductors remains an outstanding issue in condensed matter physics. The electronic…”
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    Journal Article
  2. 2

    Phase Diagram of (Li1–x Fe x )OHFeSe: A Bridge between Iron Selenide and Arsenide Superconductors by Dong, Xiaoli, Zhou, Huaxue, Yang, Huaixin, Yuan, Jie, Jin, Kui, Zhou, Fang, Yuan, Dongna, Wei, Linlin, Li, Jianqi, Wang, Xinqiang, Zhang, Guangming, Zhao, Zhongxian

    Published in Journal of the American Chemical Society (14-01-2015)
    “…Previous experimental results have shown important differences between iron selenide and arsenide superconductors which seem to suggest that the…”
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    Journal Article
  3. 3

    Observation of Ising spin-nematic order and its close relationship to the superconductivity in FeSe single crystals by Dongna, Yuan, Jie, Yuan, Yulong, Huang, Shunli, Ni, Zhongpei, Feng, Huaxue, Zhou, Yiyuan, Mao, Kui, Jin, Guangming, Zhang, Xiaoli, Dong, Fang, Zhou, Zhongxian, Zhao

    Published 01-08-2016
    “…Phys. Rev. B 94, 060506 (2016) Superconducting FeSe single crystals of (001) orientation are synthesized via a hydrothermal ion-release route. An Ising…”
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  4. 4

    Phase diagram of (Li(1-x)Fe(x))OHFeSe: a bridge between iron selenide and arsenide superconductors by Dong, Xiaoli, Zhou, Huaxue, Yang, Huaixin, Yuan, Jie, Jin, Kui, Zhou, Fang, Yuan, Dongna, Wei, Linlin, Li, Jianqi, Wang, Xinqiang, Zhang, Guangming, Zhao, Zhongxian

    Published in Journal of the American Chemical Society (14-01-2015)
    “…Previous experimental results have shown important differences between iron selenide and arsenide superconductors which seem to suggest that the…”
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    Journal Article
  5. 5
  6. 6

    Flux-free growth of large superconducting crystal of FeSe by traveling-solvent floating-zone technique by Ma, Mingwei, Yuan, Dongna, Wu, Yue, Zhou, Huaxue, Dong, Xiaoli, Zhou, Fang

    Published 11-10-2014
    “…Supercond. Sci. Technol. 27 (2014) 122001 A flux-free solution to the growth of large and composition homogeneous superconducting FeSe crystal is reported for…”
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  7. 7

    Phase diagram of (Li1-xFex)OHFeSe: a bridge between iron selenide and arsenide superconductors by Dong, Xiaoli, Zhou, Huaxue, Yang, Huaixin, Yuan, Jie, Jin, Kui, Zhou, Fang, Yuan, Dongna, Wei, Lin-lin, Li, Jianqi, Wang, Xinqiang, Zhang, Guangming, Zhao, Zhongxian

    Published 23-12-2014
    “…JACS137(2015)66-69 Previous experimental results have shown important differences between iron selenide and arsenide superconductors, which seem to suggest…”
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  8. 8

    (Li0.84Fe0.16)OHFe0.98Se superconductor: Ion-exchange synthesis of large single crystal and highly two-dimensional electron properties by Dong, Xiaoli, Jin, Kui, Yuan, Dongna, Zhou, Huaxue, Yuan, Jie, Huang, Yulong, Hua, Wei, Sun, Junliang, Zheng, Ping, Hu, Wei, Mao, Yiyuan, Ma, Mingwei, Zhang, Guangming, Zhou, Fang, Zhao, Zhongxian

    Published 16-06-2015
    “…Phys. Rev. B 92, 064515 (2015) A large and high-quality single crystal (Li0.84Fe0.16)OHFe0.98Se, the optimal superconductor of newly reported…”
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  9. 9

    Common Electronic Origin of Superconductivity in (Li,Fe)OHFeSe Bulk Superconductor and Single-Layer FeSe/SrTiO3 Films by Zhao, Lin, Liang, Aiji, Yuan, Dongna, Hu, Yong, Liu, Defa, Huang, Jianwei, He, Shaolong, Shen, Bing, Xu, Yu, Liu, Xu, Yu, Li, Liu, Guodong, Zhou, Huaxue, Huang, Yulong, Dong, Xiaoli, Zhou, Fang, Zhao, Zhongxian, Chen, Chuangtian, Xu, Zuyan, Zhou, X. J

    Published 23-05-2015
    “…Nature Communications 7, 10608 (2016) The mechanism of high temperature superconductivity in the iron-based superconductors remains an outstanding issue in…”
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    Journal Article