Effect of hyperstoichiometric manganese on the structure and transport, magnetic, and magnetoresistance properties of manganite-lanthanum (La0.7Ca0.3)1 − xMn1 + xO3 perovskites

被引:0
作者
V. P. Pashchenko
A. V. Pashchenko
V. K. Prokopenko
Yu. F. Revenko
A. A. Shemyakov
A. G. Sil’cheva
机构
[1] National Academy of Sciences of Ukraine,Donetsk Institute of Physics and Engineering
[2] Luhansk Taras Shevchenko National University,undefined
来源
Technical Physics | 2012年 / 57卷
关键词
Manganite; Perovskite Structure; Cation Vacancy; Anion Vacancy; Ferro Magnetic;
D O I
暂无
中图分类号
学科分类号
摘要
Ceramic (La0.7Ca0.3)1 − xMn1 + xO3 samples are studied by X-ray diffraction, resistive, magnetic, 55Mn NMR, and magnetoresistance methods. The concentration changes of lattice parameter a of the cubic perovskite structure and its average ionic radius are in good agreement if the concentrations of anion and cation vacancies and nanostructured clusters with Mn2+ in the A positions increase with x. Phase transition temperatures Tms and Tc weakly depend on x, and the electrical resistivity and the activation energy decrease substantially with increasing x due to a change in the imperfection of the perovskite structure. An analysis of the broad asymmetric 55Mn NMR spectra of the samples indicate a high-frequency Mn3+↔ Mn4+ electron superexchange and nonuniform magnetic and valence states of these ions because of a nonuniform distribution of ions and defects, which decrease the amplitude resonance frequency with increasing x. The magnetoresistive (MR) effect near phase-transition temperatures Tms and Tc increases substantially with x and is caused by the effect of a magnetic field on the scattering of charge carriers by intracrystallite nanostructured heterogeneities of an imperfect perovskite structure. The second MR effect is located in the low-temperature range, is related to tunneling through mesostructural crystallite boundaries, and decreases weakly with increasing x. A correlation is found between the hyperstoichiometric manganese content, the imperfection of the perovskite structure, and the magnitude of the MR effect.
引用
收藏
页码:1508 / 1513
页数:5
相关论文
共 84 条
[1]  
Alexandrov A. S.(1999)undefined Phys. Rev. Lett. 82 141-undefined
[2]  
Bratkovsky A. M.(2001)undefined Phys. Rep. 344 1-undefined
[3]  
Dagotto E.(2001)undefined Phys. Mod. Phys. 73 583-undefined
[4]  
Hotta T.(2001)undefined Phys. Rep. 346 387-undefined
[5]  
Moreo A.(2003)undefined J. App. Phys. 93 8059-undefined
[6]  
Salamon M. B.(2006)undefined J. Appl. Phys. 99 024 903-undefined
[7]  
Jaime M.(1999)undefined Neorg. Mater. 35 1509-undefined
[8]  
Nagaev E. L.(2003)undefined Phys. Solid State 45 914-undefined
[9]  
Valencia S.(2000)undefined J. Magn. Magn. Mater. 220 52-undefined
[10]  
Balcells L.(2002)undefined J. Magn. Magn. Mater. 246 40-undefined