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首页> 外文期刊>International Journal of Quantum Chemistry >Metal-insulator transitions induced by doping in LaNiO3: LaNi0.95Mo0.05O3 (M = Mo, W, Sb, Ti, Cu, Zn) perovskites
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Metal-insulator transitions induced by doping in LaNiO3: LaNi0.95Mo0.05O3 (M = Mo, W, Sb, Ti, Cu, Zn) perovskites

机译:掺杂LaNiO3:LaNi0.95Mo0.05O3(M = Mo,W,Sb,Ti,Cu,Zn)钙钛矿引起的金属-绝缘体转变

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Structural characterization and electronic properties of the LaNi0.95M0.05O3 (M = Mo, W, Sb, Ti, Cu, Zn) perovskite-like system are reported. These compounds can be regarded as being derived from LaNiO3 by partial substitution of Ni3+ in this material by M6+, M5+, M4+, or M2+ formal cations, with a partial reduction of Ni3+ to Ni2+ taking place. X-ray powder diffraction data were analyzed by means of the Rietveld method and show that all the title materials present perovskite-type structure with a rhombohedral (S.G. R (3) over bar c) or orthorhombic (S.G. Pbnm) symmetry, depending on the nature of the M cation. In all cases, Ni and M cations are placed at random in octahedral B-sites of perovskite structure. Electrical resistivity measurements (four probe method) show metal-to-insulator (M-I) transitions for M = Mo, W, Ti, Cu, Zn at temperatures of about 50 K and a semiconductor behavior for the Sb sample in the whole temperature range explored. Magnetic susceptibility measurements show the presence of weak ferromagnetic interactions for M = Sb and Pauli paramagnetism for the remaining compounds. (C) 1998 Academic Press. [References: 21]
机译:报道了LaNi0.95M0.05O3(M = Mo,W,Sb,Ti,Cu,Zn)钙钛矿样体系的结构表征和电子性能。这些化合物被认为是由LaNiO3衍生而来,该材料中的Ni3 +被M6 +,M5 +,M4 +或M2 +形式阳离子部分取代,并且Ni3 +部分还原为Ni2 +。 X射线粉末衍射数据通过Rietveld方法进行分析,结果表明所有标题材料均呈现钙钛矿型结构,具有菱形(SG C(3 bar)以上)或正交(SG Pbnm)对称性,具体取决于阳离子的性质。在所有情况下,Ni和M阳离子都随机放置在钙钛矿结构的八面体B位中。电阻率测量(四探针法)显示在大约50 K的温度下M = Mo,W,Ti,Cu,Zn的金属到绝缘体(MI)的转变,并且在整个温度范围内,Sb样品的半导体行为。磁化率测量表明,对于其余化合物,M = Sb和保利顺磁性存在弱的铁磁相互作用。 (C)1998年学术出版社。 [参考:21]

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