Specific heat of Mn-doped NaxCoO2 · yH2O

J. Y. Lin, Y. J. Chen, Chia-Jyi Liu, J. S. Wang, C. P. Sun, H. D. Yang

Research output: Contribution to journalArticle

1 Citation (Scopus)

Abstract

C(T) of NaxCo0.99Mn0.01O2 · yH2O is studied to reveal more details on the nature of the doped Mn ions and the Tc suppression. The extra specific heat contribution in NaxCo0.99Mn0.01O2 · yH2O manifests the induced local magnetic moment due to Mn doping. The absence of the superconducting transition peak in C(T) of NaxCo0.99Mn0.01O2 · yH2O suggests a reduced superconducting volume fraction.

Original languageEnglish
Pages (from-to)475-476
Number of pages2
JournalPhysica C: Superconductivity and its Applications
Volume460-462 I
Issue numberSPEC. ISS.
DOIs
Publication statusPublished - 2007 Sep 1

Fingerprint

Magnetic moments
Specific heat
Volume fraction
magnetic moments
Doping (additives)
retarding
specific heat
Ions
ions

All Science Journal Classification (ASJC) codes

  • Electronic, Optical and Magnetic Materials
  • Condensed Matter Physics
  • Energy Engineering and Power Technology
  • Electrical and Electronic Engineering

Cite this

Lin, J. Y., Chen, Y. J., Liu, C-J., Wang, J. S., Sun, C. P., & Yang, H. D. (2007). Specific heat of Mn-doped NaxCoO2 · yH2O. Physica C: Superconductivity and its Applications, 460-462 I(SPEC. ISS.), 475-476. https://doi.org/10.1016/j.physc.2007.03.285
Lin, J. Y. ; Chen, Y. J. ; Liu, Chia-Jyi ; Wang, J. S. ; Sun, C. P. ; Yang, H. D. / Specific heat of Mn-doped NaxCoO2 · yH2O. In: Physica C: Superconductivity and its Applications. 2007 ; Vol. 460-462 I, No. SPEC. ISS. pp. 475-476.
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abstract = "C(T) of NaxCo0.99Mn0.01O2 · yH2O is studied to reveal more details on the nature of the doped Mn ions and the Tc suppression. The extra specific heat contribution in NaxCo0.99Mn0.01O2 · yH2O manifests the induced local magnetic moment due to Mn doping. The absence of the superconducting transition peak in C(T) of NaxCo0.99Mn0.01O2 · yH2O suggests a reduced superconducting volume fraction.",
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Lin, JY, Chen, YJ, Liu, C-J, Wang, JS, Sun, CP & Yang, HD 2007, 'Specific heat of Mn-doped NaxCoO2 · yH2O', Physica C: Superconductivity and its Applications, vol. 460-462 I, no. SPEC. ISS., pp. 475-476. https://doi.org/10.1016/j.physc.2007.03.285

Specific heat of Mn-doped NaxCoO2 · yH2O. / Lin, J. Y.; Chen, Y. J.; Liu, Chia-Jyi; Wang, J. S.; Sun, C. P.; Yang, H. D.

In: Physica C: Superconductivity and its Applications, Vol. 460-462 I, No. SPEC. ISS., 01.09.2007, p. 475-476.

Research output: Contribution to journalArticle

TY - JOUR

T1 - Specific heat of Mn-doped NaxCoO2 · yH2O

AU - Lin, J. Y.

AU - Chen, Y. J.

AU - Liu, Chia-Jyi

AU - Wang, J. S.

AU - Sun, C. P.

AU - Yang, H. D.

PY - 2007/9/1

Y1 - 2007/9/1

N2 - C(T) of NaxCo0.99Mn0.01O2 · yH2O is studied to reveal more details on the nature of the doped Mn ions and the Tc suppression. The extra specific heat contribution in NaxCo0.99Mn0.01O2 · yH2O manifests the induced local magnetic moment due to Mn doping. The absence of the superconducting transition peak in C(T) of NaxCo0.99Mn0.01O2 · yH2O suggests a reduced superconducting volume fraction.

AB - C(T) of NaxCo0.99Mn0.01O2 · yH2O is studied to reveal more details on the nature of the doped Mn ions and the Tc suppression. The extra specific heat contribution in NaxCo0.99Mn0.01O2 · yH2O manifests the induced local magnetic moment due to Mn doping. The absence of the superconducting transition peak in C(T) of NaxCo0.99Mn0.01O2 · yH2O suggests a reduced superconducting volume fraction.

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