All Stories

  1. Suppression of charge ordering and thermal hysteresis of electronic transport and magnetisation in La0.5Ca0.5Mn1−xNixO3
  2. The effects of Si doping on the thermoelectric and magnetic properties of Ca0.98Bi0.02Mn1−xSixO3−δ with x=0.00, 0.02 and 0.03
  3. Improvement on the low-temperature thermoelectric characteristics of Ca3−xYbxCo4O9+δ (0≤x≤0.10)
  4. Rapid fabrication and transport properties of n-type Co4−xNixSb12 via modified polyol process synthesis combined with evacuated-and-encapsulated sintering
  5. Dependences of the structural, compositional and photoluminescent properties of electrodeposited CdS films upon thermal annealing
  6. Correlation Between the Electronic Structure and the Thermoelectric Properties of Gd-Doped CaMnO3−δ
  7. Effects of partial substitution of Fe for Co on the low-temperature thermoelectric and magnetic properties of Ca2.7Bi0.3Co4-xFexO9+δ (0 ≤ x ≤ 0.15)
  8. Low thermal conductivity and rapid synthesis of n-type cobalt skutterudite via a hydrothermal method
  9. Luminescence behavior and compensation effect of N-doped ZnO films deposited by rf magnetron sputtering under various gas-flow ratios of O2/N2
  10. Thermoelectric Properties of Ca3−x Ag x Co3.95Fe0.05O9+δ (0 ≤ x ≤ 0.3)
  11. Low-temperature thermoelectric and magnetic characteristics of Ca2.9Bi0.1Co4−xFexO9+δ (0 ≤ x ≤ 0.10)
  12. Thermoelectric properties of Ca2.95Bi0.05Co4−xFexO9+δ (0⩽x⩽0.15)
  13. Low-temperature thermoelectric characteristics of Ca3−xYbxCo3.95Ga0.05O9+δ (0 ≤ x ≤ 0.10)
  14. Thermoelectric and magnetic properties of Ca3Co4–xCuxO9+δ with x=0.00, 0.05, 0.07, 0.10 and 0.15
  15. Low-temperature thermoelectric and magnetic properties of Ca3−x Bi x Co4O9+δ (0 ≤ x ≤ 0.30)
  16. Photovoltaic properties of n-type SnS contact on the unpolished p-type Si surfaces with and without sulfide treatment
  17. LOW TEMPERATURE THERMOELECTRIC PROPERTIES AND AGING PHENOMENA OF NANOSTRUCTURED p-TYPE Bi 2-X Sb X Te 3 (x = 1.46, 1.48, 1.52 AND 1.55)
  18. Thermoelectric Properties of Ca3−x Dy x Co3.95Ga0.05O9+δ
  19. High-temperature thermoelectric properties of Ca3−xPrxCo3.95Ga0.05O9+δ
  20. Thermoelectric properties of Ca3−xEuxCo4O9+δ (0≤x≤0.1)
  21. Thermoelectric properties of Ca3-xEuxCo3.95Ga0.05O9+δ (0 ≤ x ≤ 0.10)
  22. Tuning the formation of p-type defects by peroxidation of CuAlO2 films
  23. Thermoelectric Properties of Ca3−x Dy x Co4O9+δ with x = 0.00, 0.02, 0.05, and 0.10
  24. Thermoelectric properties of Ca3Co4−xMnxO9+δ with x = 0.00, 0.05, 0.10, and 0.15
  25. Luminescence, structural and ferromagnetic properties of Zn1−xMnxSy films for different manganese contents
  26. Thermoelectric properties of n-type Ca1-xBixMnO3-δ (0.00, 0.02, and 0.05) system
  27. Thermoelectric properties of n-type Ca1−xBixMn1−ySiyO3−δ (x=y=0.00, 0.02, 0.03, 0.04, and 0.05) system
  28. Conduction-type control of SnSx films prepared by the sol–gel method for different sulfur contents
  29. Erratum to: Thermoelectric and Magnetic Properties of Ca0.98RE0.02MnO3-δ (RE = Sm, Gd, and Dy)
  30. Effects of Reaction Temperature on Thermoelectric Properties of p-Type Nanostructured Bi2−x Sb x Te3 Prepared Using Hydrothermal Method and Evacuated-and-Encapsulated Sintering
  31. Fabrication and Thermoelectric Power Factor of CoSb3 Prepared using Modified Polyol Process and Evacuated- and-Encapsulated Sintering
  32. Power factor improvement in hydrothermally synthesized Bi2−xSbxTe3 (x=1.5) — carbon sphere composites
  33. Dependence of luminescent properties and crystal structure of Li-doped ZnO nanoparticles upon Li content
  34. X-ray absorption spectroscopy studies of Ca2.9Ln0.1Co4O9+δ (Ln=Ca, Dy, Ho, Er and Lu)
  35. Erratum to “Defects, stress and abnormal shift of the (0 0 2) diffraction peak for Li-doped ZnO films” [Appl. Surf. Sci. 256 (2010) 7623–7627]
  36. Thermoelectric and Magnetic Properties of Ca0.98RE0.02MnO3−δ (RE = Sm, Gd, and Dy)
  37. Erratum: “Effects of Li content on the structural, optical, and electrical properties of LiZnMgO films” [J. Appl. Phys. 107, 113717 (2010)]
  38. Synthesis of submicron tubules of sodium cobaltate using a natural template of bamboo charcoal as supporting templates
  39. Effects of Ti content on the optical and structural properties of the Ti-doped ZnO nanoparticles
  40. Thermoelectric properties of compacted Bi2-xSbxTe3 nanoplatelets with nominal composition of x = 1.5
  41. Thermoelectric Properties of Ca1−xGdxMnO3−δ(0.00, 0.02, and 0.05) Systems
  42. High thermoelectric figure-of-merit in p-type nanostructured (Bi,Sb)2Te3 fabricated via hydrothermal synthesis and evacuated-and-encapsulated sintering
  43. Enhanced thermoelectric performance of compacted Bi0.5Sb1.5Te3 nanoplatelets with low thermal conductivity
  44. Effects of Na content on the luminescence behavior, conduction type, and crystal structure of Na-doped ZnO films
  45. High-temperature transport properties of Ca0.98RE0.02MnO3−δ (RE=Sm, Gd, and Dy)
  46. Improved Thermoelectric Characteristics of Si-Doped Misfit-Layered Cobaltite
  47. High-temperature thermoelectric properties of late rare earth-doped Ca3Co4O9+δ
  48. Defects, stress and abnormal shift of the (002) diffraction peak for Li-doped ZnO films
  49. Effects of Li content on the structural, optical, and electrical properties of LiZnMgO films
  50. Synthesis of monolayers and bilayers of cobalt oxyhydrates (Na,K) x (H2O) y CoO2− δ
  51. Fabrication of nanotubules of thermoelectric γ-Na0.7CoO2 using porous aluminum oxide membrane as supporting template
  52. Improvement on the high temperature thermoelectric performance of Ga-doped misfit-layered Ca3Co4−xGaxO9+δ (x=0, 0.05, 0.1, and 0.2)
  53. Synthesis of sodium cobalt oxide submicron tubules using citric acid-based sol-gel route assisted by porous aluminum oxide membrane
  54. A simple approach of fabricating thermoelectric γ-NaxCoO2 and superconductive Nax(H2O)yCoO2-δ films using the sol–gel spin-coating method
  55. Structural, electrical, optical and magnetic properties of Co0.2AlxZn0.8−xO films
  56. Effect of Mn doping on the physical properties of misfit-layered Ca3Co4O9+δ
  57. Ferromagnetism study of Co0.2Mg x Zn0.8−x O films prepared by the sol–gel method
  58. Improvement of Thermoelectric Power Factor of Hydrothermally Prepared Bi0.5Sb1.5Te3 Compared with its Solvothermally Prepared Counterpart
  59. Erratum: “Thermopower and Co K-edge studies of potassium sodium cobalt oxyhydrates Na0.33K0.02(H2O)1.33CoO2−δ and Na0.07K0.21(H2O)0.63CoO2−δ” [Appl. Phys. Lett. 91, 142509 (2007)]
  60. Hysteresis mechanism in current–voltage characteristics of ZrOxfilms prepared by the sol–gel method
  61. The effects of sintering temperature on preparation, resistivity, and thermopower of c-axis oriented Ca3Co3.95Fe0.05O9+δ films fabricated using sol–gel spin coating method
  62. Mechanisms of enhancing magnetic properties of Zn1−xCoxO films prepared by the sol–gel method
  63. Analysis of the band-edge luminescence degradation for ZnO films with Al doping prepared by the sol–gel method
  64. Effects of Mg incorporation on the optical properties of ZnO prepared by the sol-gel method
  65. Mechanisms of enhancing band-edge luminescence of Zn1−xMgxO prepared by the sol–gel method
  66. Water intercalation of sodium cobalt oxides using aqueous permanganate solution
  67. Thermopower and Co K-edge studies of potassium sodium cobalt oxyhydrates Na0.33K0.02(H2O)1.33CoO2−δ and Na0.07K0.21(H2O)0.63CoO2−δ
  68. Comment on “Characterization of Sodium Cobalt Oxides Related to P3-Phase Superconductor”
  69. Magnetothermopower and magnetoresistivity of RuSr2Gd2−xCexCu2O10+δ (x=0.6,1.0)
  70. Synthesis of superconducting cobalt oxyhydrates using a novel method: Electrolyzed and oxidized water
  71. X-ray absorption spectroscopy studies of Fe-doped misfit-layered Ca3Co4−xFexO9+δ (x=0, 0.05, 0.1, and 0.15)
  72. Thermoelectric characteristics of solvothermally prepared (Bi,Sb)2Te3 mats containing nanosize of sheet-tubes
  73. Induced increase in surface work function and surface energy of indium tin oxide-doped ZnO films by (NH4)2Sx treatment
  74. Improvement of the thermoelectric characteristics of Fe-doped misfit-layered Ca3Co4−xFexO9+δ (x=, 0.05, 0.1, and 0.2)
  75. Optical and electrical properties of undoped ZnO films
  76. Preparation of Superconducting Nax(H2O)yCoO2 Using NaMnO4 as the Deintercalation and Oxidation Agent.
  77. Preparation of Superconducting Nax(H2O)yCoO2 using NaMnO4 as the Deintercalation and Oxidation Agent