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- W179632294 abstract "The temperature dependence of the specific heat has been measured for Fe-, Co-, and Ni-doped HfV2 systems. HfV2 undergoes a structural transformation at TS=116 K and becomes superconducting at TC=9 K. The low temperature specific heat of HfV2 shows an enhanced electronic specific heat coefficient indicating a large density of states at the Fermi level. TC shows nonmonotonic behavior with magnetic ion concentration. It increases initially as one dopes HfV2 with small amounts of Fe, Co, or Ni and reaches a maximum of 9.4 K for about 3.0 to 4.0 at. % doping and then decreases for higher concentrations. On the other hand, the specific heat data at higher temperatures show that both TS and the size of the specific heat anomaly at TS decrease monotonically and dramatically when the concentration of Fe, Co, or Ni is increased. No evidence of a structural transformation is detected for samples with more than 5 at. % Fe, Co, or Ni. The variations of TC and TS can be explained qualitatively by recent theoretical calculations." @default.
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- W179632294 date "2000-05-01" @default.
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- W179632294 title "The effects of Fe, Co, and Ni doping on the superconductivity and structure of HfV2" @default.
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- W179632294 doi "https://doi.org/10.1063/1.372845" @default.
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