Enhanced electronic correlation and thermoelectric response by Cu-doping in Ca3Co4O9 single crystals.

@article{Huang2012EnhancedEC,
  title={Enhanced electronic correlation and thermoelectric response by Cu-doping in Ca3Co4O9 single crystals.},
  author={Yanan Huang and Bangchuan Zhao and Xinbo Hu and Shuai Lin and Ran Ang and Wenhai Song and Yuping Sun},
  journal={Dalton transactions},
  year={2012},
  volume={41 36},
  pages={
          11176-86
        }
}
The structure, anisotropic magnetic, electrical and thermal transport properties for single crystals of Ca(3)Co(4-x)Cu(x)O(9) (x = 0, 0.2, 0.4, 0.6 and 0.8) have been investigated systematically. The Cu-doping with x = 0.2 at Co-site is sufficient to drive the low-temperature spin-glass state in the Ca(3)Co(4)O(9) system. The value of resistivity along ab-plane decreases monotonously with increasing x in the whole temperature range studied, and around room temperature, the in-plane resistivity… 
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References

SHOWING 1-10 OF 27 REFERENCES
Doping-Induced Metal−Insulator Transition and the Thermal Transport Properties in Ca3−xYxCo4O9
We report the electrical, thermal, magnetic, and thermoelectric properties of Y-doped Ca(3)Co(4)O(9) from 300 down to 5 K. The results indicate that with Y doping, the increase of resistivity
Enhanced high temperature thermoelectric characteristics of transition metals doped Ca3Co4O9+δ by cold high-pressure fabrication
A series of Fe, Mn, and Cu doped Ca(3)Co(4)O(9+delta) samples, Ca(3)(Co,M)(4)O(9+delta) (M=Fe, Mn, and Cu), were fabricated by cold high-pressure compacting technique. Their thermoelectric properties
Magnetic and transport properties in the Ti doped cobaltite Ca3Co4-xTixO9 (0≤x≤0.8) single crystals
Single crystals of Ca3Co4−xTixO9 (x=0, 0.2, 0.4, 0.6, and 0.8) are grown by flux growth technique. The effect of Ti doping at Co site on magnetic and transport properties is studied. All samples show
Strongly Correlated Properties and Enhanced Thermoelectric Response in Ca3Co4−xMxO9 (M = Fe, Mn, and Cu)†
We report the strongly correlated, electrical transport, magnetic, and thermoelectric properties of a series of Fe, Mn, and Cu doped Ca3Co4O9. The results indicate that Fe/Mn substitutes for Co in
Thermoelectric power of HoBaCo2O5.5: possible evidence of the spin blockade in cobaltites.
Thermoelectric power measurements have been performed for an ordered oxygen-deficient perovskite, HoBaCo2O5.5, in which the alternative layers of CoO6 octahedra and of [CoO(5)](2) bipyramids are
Effects of partial substitution of transition metals for cobalt on the high-temperature thermoelectric properties of Ca3Co4O9+δ
Polycrystalline samples of Ca3Co4−xMxO9+δ (M=Ni, Fe, Mn, Cu; x=0–0.6) have been prepared using sol-gel procedure followed by spark plasma sintering. Their thermoelectric properties have been
Electronic structure of misfit-layered calcium cobaltite
We have performed the first-principles calculations on (Ca 2 CoO 3 ) 4 (CoO 2 ) 6 to understand electronic structures of the misfit-layered calcium cobaltite, (Ca 2 CoO 3 ) x CoO 2 , within the
Contribution of electronic structure to the large thermoelectric power in layered cobalt oxides
With a strong help of high-resolution photoemission spectroscopy we demonstrate in this paper that the large thermoelectric power observed in the layered cobalt oxides, such as Ca3Co4O9 ,N a 0.6CoO2,
Low-Temperature Thermoelectric Properties of the Composite Crystal [Ca 2CoO 3.34] 0.614[CoO 2]
Electric resistivity, thermoelectric power and thermal conductivity of a polycrystalline sample of the composite crystal [Ca2CoO3.34]0.614[CoO2], also known as Ca3Co4O9, have been measured below 300
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