TY - JOUR
T1 - Critical Temperature of Smart Meta-superconducting MgB2
AU - Tao, Shuo
AU - Li, Yongbo
AU - Chen, Guowei
AU - Zhao, Xiaopeng
N1 - Publisher Copyright:
© 2017, Springer Science+Business Media New York.
PY - 2017/6/1
Y1 - 2017/6/1
N2 - Enhancing the critical temperature (TC) is important not only to widen the practical applications but also to expand the theories of superconductivity. Inspired by the meta-material structure, we designed a smart meta-superconductor consisting of MgB2 microparticles and Y2O3/Eu3+ nanorods. In the local electric field, Y2O3/Eu3+ nanorods generate an electroluminescence (EL) that can excite MgB2 particles, thereby improving the TC by strengthening the electron–phonon interaction. An MgB2-based superconductor doped with one of four dopants of different EL intensities was prepared by an ex situ process. Results showed that the TC of MgB2 doped with 2 wt% Y2O3, which is not an EL material, is 33.1 K. However, replacing Y2O3 with Y2O3/Eu3+II, which displays a strong EL intensity, can improve the TC by 2.8 to 35.9 K, which is even higher than that of pure MgB2. The significant increment in TC results from the EL exciting effect. Apart from EL intensity, the micromorphology and degree of dispersion of the dopants also affected the TC. This smart meta-superconductor provides a new method to increase TC.
AB - Enhancing the critical temperature (TC) is important not only to widen the practical applications but also to expand the theories of superconductivity. Inspired by the meta-material structure, we designed a smart meta-superconductor consisting of MgB2 microparticles and Y2O3/Eu3+ nanorods. In the local electric field, Y2O3/Eu3+ nanorods generate an electroluminescence (EL) that can excite MgB2 particles, thereby improving the TC by strengthening the electron–phonon interaction. An MgB2-based superconductor doped with one of four dopants of different EL intensities was prepared by an ex situ process. Results showed that the TC of MgB2 doped with 2 wt% Y2O3, which is not an EL material, is 33.1 K. However, replacing Y2O3 with Y2O3/Eu3+II, which displays a strong EL intensity, can improve the TC by 2.8 to 35.9 K, which is even higher than that of pure MgB2. The significant increment in TC results from the EL exciting effect. Apart from EL intensity, the micromorphology and degree of dispersion of the dopants also affected the TC. This smart meta-superconductor provides a new method to increase TC.
KW - Ex situ
KW - MgB
KW - Smart meta-superconductor
KW - T
KW - YO/Eu nanorods
UR - http://www.scopus.com/inward/record.url?scp=85008684366&partnerID=8YFLogxK
U2 - 10.1007/s10948-016-3963-7
DO - 10.1007/s10948-016-3963-7
M3 - 文章
AN - SCOPUS:85008684366
SN - 1557-1939
VL - 30
SP - 1405
EP - 1411
JO - Journal of Superconductivity and Novel Magnetism
JF - Journal of Superconductivity and Novel Magnetism
IS - 6
ER -