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- W2019158700 abstract "We report the synthesis and characterization of ${text{Pd}}_{text{x}}{text{TiSe}}_{2}$ via magnetization, resistivity, specific heat measurements, and low-temperature electron diffraction. At very low levels of intercalation, near ${text{Pd}}_{0.01}{text{TiSe}}_{2}$, the commensurate charge density wave transition in the ${text{TiSe}}_{2}$ parent compound near 220 K becomes substantially stronger; a distinct transition to a more resistive state is seen at about 80 K. Originally semimetallic, ${text{TiSe}}_{2}$ becomes an insulator at low temperatures for $0.01ensuremath{le}xensuremath{le}0.06$ in ${text{Pd}}_{text{x}}{text{TiSe}}_{2}$. Increasing Pd intercalation beyond this level begins to suppress the insulating behavior until a 2 K superconductor is found in the narrow composition range of $0.11ensuremath{le}xensuremath{le}0.12$. Beyond $x=0.12$, a normal metallic state (down to 0.3 K) is induced." @default.
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- W2019158700 date "2010-03-26" @default.
- W2019158700 modified "2023-10-16" @default.
- W2019158700 title "Multiple electronic transitions and superconductivity inPdxTiSe2" @default.
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- W2019158700 doi "https://doi.org/10.1103/physrevb.81.094524" @default.
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