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  5. Nanorod-Superconductor Composites: A Pathway to Materials with High Critical Current Densities

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Article
English
1996

Nanorod-Superconductor Composites: A Pathway to Materials with High Critical Current Densities

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0 Files

English
1996
Science
Vol 273 (5283)
DOI: 10.1126/science.273.5283.1836

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Charles M. Lieber
Charles M. Lieber

Harvard University

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Peidong Yang
Charles M. Lieber

Abstract

Most large-scale applications of the high-temperature copper oxide superconductors (HTSCs) require high critical current densities ( J c 's) at temperatures near the boiling point of liquid nitrogen to be technologically useful, although thermally activated flux flow reduces J c dramatically at these temperatures. This intrinsic limitation can be overcome by introducing nanometer-sized columnar defects into an HTSC. Nanorods of magnesium oxide were grown and incorporated into HTSCs to form nanorod-HTSC composites. In this way, a high density of nanorod columnar defects can be created with orientations perpendicular and parallel to the copper oxide planes. The J c 's of the nanorod-HTSC composites are enhanced dramatically at high temperatures and magnetic fields as compared with reference samples; these composites may thus represent a technologically viable strategy for overcoming thermally activated flux flow in large-scale applications.

How to cite this publication

Peidong Yang, Charles M. Lieber (1996). Nanorod-Superconductor Composites: A Pathway to Materials with High Critical Current Densities. Science, 273(5283), pp. 1836-1840, DOI: 10.1126/science.273.5283.1836.

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Publication Details

Type

Article

Year

1996

Authors

2

Datasets

0

Total Files

0

Language

English

Journal

Science

DOI

10.1126/science.273.5283.1836

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