49 results on '"Shimada, M."'
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2. Mechanism of metal-insulator transition in the systems (Ln1−xCax)MnO3−δ (Ln: La, Nd, and Gd) and (Nd0.1Ca0.9−ySry)MnO2.97
3. Metal-insulator transition and thermoelectric properties in the system (R1−Ca )MnO3− (R: Tb, Ho, Y)
4. Electrical properties in the system (Nd0.1Ca0.9−xSrx)MnO2.97 (0 ≤ x ≤ 0.4)
5. High pressure synthesis and electrical and magnetic properties of MnGe4 and CoGe4
6. High-Pressure Synthesis, Crystal Structure, and Magnetic Properties of Mn1-xTxGe4(T:Co, Fe)
7. High-temperature phase transition of CaMnO3−δ
8. The effect of oxygen vacancy on the magnetic properties in the system SrCoO3−δ (0 < δ < 0.5)
9. Metal-insulator transition in the system (Gd1−xCax)MnO2.98
10. Magnetic interactions in ternary cobalt oxides with cubic perovskite structure
11. High-pressure synthesis and electrical and magnetic properties of MnGe and CoGe with the cubic B20 structure
12. X-ray photoelectron spectroscopy study of (Nd1−xCax)MnO2.99 (0.5 ≦ x ≦ 1.0)
13. Preparation and characterization of compounds of the system Fe(Sb1−xTex)2 (0 ⩽ x ⩽ 1.0)
14. Electric properties of ferromagnetic La1−XSrXCoO3 (0.5 ≦ X ≦ 0.9)
15. Pressure-products diagram of FexV1−xO2 system (0 ≤ x ≤ 0.5)
16. Magnetic properties in the system (La1−xCax)CoO3 (0≦ x ≦ 0.6)
17. Preparation, crystallization, and magnetic properties of amorphous Fe100−xBx (18 ≦ x ≦ 42)
18. Magnetic properties in the system BaCo1−xMnxO3 and SrCo1−xMnxO3 (0 ≦ x ≦ 1)
19. Magnetic and electrical properties and Mössbauer effect in the solid solution Fe(Nb1−xWx)O4 (0 ⩽ x ⩽ 1)
20. The oxidation state of antimony and electrical properties in antimony-doped rutile
21. Synthesis and fluorescence properties of Tb2Te4O11
22. High-pressure synthesis and crystal structure of VGe2 and Cr4Ge7
23. X-ray photoelectron spectroscopy study of (Ca1−xLax)MnO2.97 (0.1 ≦ x ≦ 0.4)
24. High-pressure synthesis and magnetic properties of the solid solution MnCrxSb and CrMnySb (0 ≦ x, y ≦ 1.0)
25. Electrical properties in the system (La1−xCax)CoO3 (0.1 ≦ x ≦ 0.5)
26. Metal-insulator transition in the system (Nd1−xCax)MnO2.99 (0.5 ≦ x ≦ 0.9)
27. Preparation and crystal structure of Fe(Sb1−xTex)2 and Co(Sb1−xTex)2 (0 ≦ x ≦ 1)
28. Preparation and Mössbauer effect of Cr1−xFexOOH (0 ≦ x ≦ 1.0) with the InOOH-type structure
29. Metal-insulator transition in the system (Ca1−xLax)MnO2.97 (0.05 ≦ x ≦ 0.4)
30. The isotropic temperature factors of Sr(Co1−xMnx)O3 (x = 0, 0.1, 0.5, 0.8, and 1.0)
31. High-pressure synthesis and electrical properties of Mn3Ge5 with Mn11Si19-type structure
32. Synthesis of Ba(V1−xTix)S3 (0 ≦ x ≦ 1.0) compounds and their structural transitions
33. Mössbauer effect of FeOCl-pyridine complex
34. Synthesis of 12-layer modification of hexagonal BaFeO3 under high oxygen pressure
35. High-pressure synthesis and electrical properties of Mn 3Ge 5 with Mn 11Si 19-type structure
36. Preparation and Mössbauer effect of Cr 1− xFe xOOH (0 ≦ x ≦ 1.0) with the InOOH-type structure
37. Electric properties of ferromagnetic La 1− XSr XCoO 3 (0.5 ≦ X ≦ 0.9)
38. X-ray photoelectron spectroscopy study of (Nd 1− xCa x)MnO 2.99 (0.5 ≦ x ≦ 1.0)
39. High-pressure synthesis and magnetic properties of the solid solution MnCr xSb and CrMn ySb (0 ≦ x, y ≦ 1.0)
40. Preparation, crystallization, and magnetic properties of amorphous Fe 100− xB x (18 ≦ x ≦ 42)
41. The effect of oxygen vacancy on the magnetic properties in the system SrCoO 3−δ (0 < δ < 0.5)
42. High pressure synthesis and electrical and magnetic properties of MnGe 4 and CoGe 4
43. Preparation and crystal structure of Fe(Sb 1− xTe x) 2 and Co(Sb 1− xTe x) 2 (0 ≦ x ≦ 1)
44. Metal-insulator transition and thermoelectric properties in the system ( R1− xCa x)MnO 3− δ ( R: Tb, Ho, Y)
45. Metal-insulator transition in the system (Nd 1− xCa x)MnO 2.99 (0.5 ≦ x ≦ 0.9)
46. X-ray photoelectron spectroscopy study of (Ca 1− xLa x)MnO 2.97 (0.1 ≦ x ≦ 0.4)
47. Electrical properties in the system (La 1− xCa x)CoO 3 (0.1 ≦ x ≦ 0.5)
48. Synthesis of 12-layer modification of hexagonal BaFeO 3 under high oxygen pressure
49. Electrical properties in the system (Nd 0.1Ca 0.9− xSr x)MnO 2.97 (0 ≤ x ≤ 0.4)
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