The formation of nano-layered grains and their enhanced superconducting transition temperature in Mg-doped FeSe 0.9 bulks

Feng Lan, Zongqing Ma*, Yongchang Liu, Ning Chen, Qi Cai, Huijun Li, Shaon Barua, Dipak Patel, M. Shahriar Al Hossain, Jung Ho Kim, Shi Xue Dou

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

7 引用 (Scopus)

摘要

To search a proper dopant to further improve superconductivity in 11 type Fe-based superconductors makes sense to both their superconductivity mechanism and possible technological applications. In present work, Mg doped FeSe polycrystalline bulks were obtained by a two-step solid-state reaction method. Even though there are many MgSe and iron impurities existing in the Mg heavy doped FeSe bulks, they exhibit obviously increased T c compared to undoped FeSe sample. It was found that Mg addition has little effect on the crystal lattice parameters of superconducting Î 2-FeSe, whereas leads to the formation of nano-layered grain structure consisted of MgSe and Î 2-FeSe with similar X-ray diffraction characteristics. Lots of nano-structural interfaces between FeSe and MgSe formed in this homogenous layered grain structure have significant effect on the superconducting properties and are responsible for the enhancement of T c, as like the case of FeSe thin film on some specific substrates. Our work not only demonstrates a powerful way for raising T c in bulk superconductors, but also provides a well-defined platform for systematic studies of the mechanism of unconventional superconductivity by considering interface effect.

源语言英语
文章编号6481
期刊Scientific Reports
4
DOI
出版状态已出版 - 2014
已对外发布

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