Bi-Sr-Ca-Cu-O bulk superconductors with zero resistance above 110 K

Optimized processing to obtain bulk superconductors in Bi-Sr-Ca-Cu-O system with zero resistance above 110 K has been studied. The superconducting path of the high-T/sub c/ phase has been realized in multiphase polycrystalline samples. The resistance of a typical sample reaches zero at 111 K. The us...

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Published in:IEEE transactions on magnetics Vol. 25; no. 2; pp. 2017 - 2020
Main Authors: Huang, H.S., Mao, S.N., Yao, Z.T., Liu, M.L., Ren, X.D., Zhang, K.S., Wu, Z.Y., Zhao, X., Liu, Y.-Z.
Format: Journal Article
Language:English
Published: IEEE 01-03-1989
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Abstract Optimized processing to obtain bulk superconductors in Bi-Sr-Ca-Cu-O system with zero resistance above 110 K has been studied. The superconducting path of the high-T/sub c/ phase has been realized in multiphase polycrystalline samples. The resistance of a typical sample reaches zero at 111 K. The usual resistive tail extended to 80 K has been successfully cut off. The importance of the role CuO played in the sintering reactions for the formation of the 110 K phase is discussed on the basis of the results of DTA (differential thermal analysis) and TG experiments.< >
AbstractList Optimized processing to obtain bulk superconductors in Bi-Sr-Ca-Cu-O system with zero resistance above 110 K has been studied. The superconducting path of the high- < e1 > T < /e1 > (c) phase has been realized in multiphase polycrystalline samples. The resistance of a typical sample reaches zero at 111 K. The usual resistive tail extended to 80 K has been successfully cut off. The importance of the role CuO played in the sintering reactions for the formation of the 110 K phase is discussed on the basis of the results of DTA (differential thermal analysis) and TG experiments
Optimized processing to obtain bulk superconductors in Bi-Sr-Ca-Cu-O system with zero resistance above 110 K has been studied. The superconducting path of the high-Tc phase has been realized in multiphase, polycrystalline samples. The resistance of a typical sample reaches zero at 111 K. The usual resistive tail extended to 80 K has been successfully cut off. The importance of the role CuO played in the sintering reactions for the formation of 110 K phase is discussed on the basis of the results of DTA (differential thermal analysis) and TG experiments. (I.E.)
Optimized processing to obtain bulk superconductors in Bi-Sr-Ca-Cu-O system with zero resistance above 110 K has been studied. The superconducting path of the high-T/sub c/ phase has been realized in multiphase polycrystalline samples. The resistance of a typical sample reaches zero at 111 K. The usual resistive tail extended to 80 K has been successfully cut off. The importance of the role CuO played in the sintering reactions for the formation of the 110 K phase is discussed on the basis of the results of DTA (differential thermal analysis) and TG experiments.< >
Author Liu, Y.-Z.
Mao, S.N.
Zhang, K.S.
Wu, Z.Y.
Yao, Z.T.
Liu, M.L.
Zhao, X.
Huang, H.S.
Ren, X.D.
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References ref13
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  article-title: New Bi-Sr-Ca-Cu-O Bulk Superconductors
  publication-title: Conference on Superconductor Electronics
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    fullname: mao
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  doi: 10.1103/PhysRevB.37.9382
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– volume: 27
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  year: 1988
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  article-title: Superconductivity of Bi0.25-ySr0.25-yCa2yCu0.5Ox (y=0.1, 0.125,0.15)
  publication-title: Jpn J Appl Phys
  doi: 10.1143/JJAP.27.L542
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Snippet Optimized processing to obtain bulk superconductors in Bi-Sr-Ca-Cu-O system with zero resistance above 110 K has been studied. The superconducting path of the...
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SubjectTerms Calcination
Chemistry
Conductivity
Electrical resistance measurement
Magnetic susceptibility
Physics
Superconducting materials
Superconducting transition temperature
Superconductivity
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Title Bi-Sr-Ca-Cu-O bulk superconductors with zero resistance above 110 K
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