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Properties of La-Sr Manganites with Combined Substitution of Different Valence Ions for Strontium and Manganese

机译:La-Sr锰铁结合不同价态锶和锰的性质

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摘要

Experimental data on structural, magnetic, and electrical features of manganites of the system La~(0.65)Sr~(0.35– c )CecMn~(1 – x )Zn~( x )O~(3 + γ )( c = 0, 0.05; x = 0, 0.05, 0.10), synthesized by ceramic processing, are reported. Part of the samples were annealed under conditions that yield stoichiometric oxygen content. The samples obtained are of rhombohedral structure, but contain the impurity of the CeO~(2)phase. The introduction of cerium and zinc leads to a decrease in the unit cell volume of the rhombohedral phase. Cerium does not substantially affect the magnetization and Curie point of the initial samples. The width of the “ferromagnetic–paramagnetic” transition temperature interval rises after annealing, especially in manganite with high zinc content. Initial and annealed samples of composition with c = 0.05, x = 0.10 exhibit the phase transition “metal–semiconductor” at temperatures of about 219 K and 200 K, respectively. All other manganites possess a metallic character of conductivity in the range of 100–300 K. The maximum absolute value of magnetoresistance reaches 52%. The approaches to the interpretation of experimental results are discussed.
机译:La〜(0.65)Sr〜(0.35–c)CecMn〜(1-x)Zn〜(x)O〜(3 +γ)(c = 0)的锰的结构,磁和电特性的实验数据,报告; 0.05; x = 0,0.05,0.10),通过陶瓷加工合成。在产生化学计量氧含量的条件下对部分样品进行退火。获得的样品具有菱面体结构,但含有CeO〜(2)相杂质。铈和锌的引入导致菱形面相的晶胞体积减少。铈基本上不会影响初始样品的磁化强度和居里点。退火后,“铁磁-顺磁”转变温度区间的宽度增大,尤其是在锌含量较高的锰矿中。初始和退火样品的c = 0.05,x = 0.10,分别在约219 K和200 K的温度下显示出相变“金属-半导体”。所有其他锰矿均具有100-300 K范围内的电导率的金属特性。磁阻的最大绝对值达到52%。讨论了解释实验结果的方法。

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