简介概要

Rare earth doping effects on superconducting properties of MgB2:A review

来源期刊:JOURNAL OF RARE EARTHS2019年第2期

论文作者:Wenxian Li Jixiang Kang Siwei Fu Yemin Hu Pengfei Hu Mingyuan Zhu Ying Li

文章页码:124 - 133

摘    要:Rare earth(RE) elements and their compounds have been doped into MgB2 since the discovery of the superconductivity of MgB2. The doping effects of RE elements and RE compounds are summarized in terms of different doping methods and the accompanying variations in the superconducting transition temperature, upper critical field, irreversibility field, and critical current density(Jc). Conclusions are drawn on the doping mechanisms to demonstrate the possibility of improvement of Jcin the future. REBy phase inclusions are observed in MgB2 as nano-pinning centers with significant enhancement of Jcin MgB2 doped with Y, La, Dy, Ho, Nd, etc. Furthermore, some REs with larger magnetic moments will provide more efficient flux pinning centers with larger pinning forces, which is different with the doping effects and mechanism of ferromagnetic transition metals in MgB2. The co-doping effects of RE with other dopants are also reviewed due to the multiple advantages of different doping mechanisms.

详情信息展示

Rare earth doping effects on superconducting properties of MgB2:A review

Wenxian Li1,2,3,Jixiang Kang1,Siwei Fu1,Yemin Hu1,2,Pengfei Hu1,Mingyuan Zhu1,2,Ying Li1,2

1. Institute of Materials & Laboratory for Microstructures, School of Materials Science and Engineering, Shanghai University2. Institute for Sustainable Energy, Shanghai University3. Shanghai Key Laboratory of High Temperature Superconductors, Physics Department, Shanghai University

摘 要:Rare earth(RE) elements and their compounds have been doped into MgB2 since the discovery of the superconductivity of MgB2. The doping effects of RE elements and RE compounds are summarized in terms of different doping methods and the accompanying variations in the superconducting transition temperature, upper critical field, irreversibility field, and critical current density(Jc). Conclusions are drawn on the doping mechanisms to demonstrate the possibility of improvement of Jcin the future. REBy phase inclusions are observed in MgB2 as nano-pinning centers with significant enhancement of Jcin MgB2 doped with Y, La, Dy, Ho, Nd, etc. Furthermore, some REs with larger magnetic moments will provide more efficient flux pinning centers with larger pinning forces, which is different with the doping effects and mechanism of ferromagnetic transition metals in MgB2. The co-doping effects of RE with other dopants are also reviewed due to the multiple advantages of different doping mechanisms.

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