金属有机气相外延
材料科学
金属
导电体
产量(工程)
纳米技术
复合材料
外延
图层(电子)
冶金
作者
Eduard Galstyan,Rudra Pratap,Mahesh Paidpilli,Goran Majkic,V. Selvamanickam
标识
DOI:10.1109/tasc.2021.3061904
摘要
BaMO3(M = Zr, Hf) pinning centers introduced in REBa2Cu3O7-x(REBCO and RE = rare earth) coated conductors yield superior performance in high magnetic fields. We present the critical current density Jcover a temperature range of 4.2-77 K and magnetic fields of 0-14 T (B || c-axis), of 5-15 mol.% Zr- and Hf- added REBCO 4+ μm thick film tapes fabricated by advanced metal organic chemical vapor deposition (A-MOCVD). The morphology of self-assembled BMO nanorods aligned along c-axis is found to be dependent on the Zr/Hf content. We also observe a correlation between the density of RE2O3in-plane nanoprecipitates and the continuity and concentration of BMO nanorods in films of different Ba content. It is found that the (Ba + M)/Cu (M = Zr, Hf) content in REBa2Cu3O7-xaffects the shape of pinning force density curves over a wide magnetic field range and temperatures below 20 K. Another remarkable observation is the similarity in the critical current properties of Hf and Zr- added REBCO films as function of (Ba + M)/Cu content at intermediate to high range of (Ba + M)/Cu content. A quantitative analysis of pinning efficiency and correlation with the microstructure of Zr and Hf- added REBCO coated conductors is discussed.
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