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High-pressure synthesis, crystal structure, and metal-semiconductor transitions in the Tl2Ru2O7-delta pyrochlore

机译:Tl2Ru2O7-δ烧绿石中的高压合成,晶体结构和金属-半导体转变

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Thallium ruthenium oxides, Tl2Ru2O7-delta, with the pyrochlore structure were synthesized under a pressure of 1-5 GPa and 1173 K and characterized by resistivity, magnetization, and TOF neutron-diffraction measurements. The oxygen vacancy, delta, varied with the synthesis conditions and significantly affected their electrical properties. The pyrochlores synthesized at high pressure and atmospheric pressure are classified into four groups which depend on their oxygen nonstoichiometry, (i) Nonstoichiometric Tl2Ru2O6.71 shows a metallic conductivity with almost temperature-independent magnetization. (ii) Stoichiometric Tl2Ru2O7 synthesized under high oxygen pressure using KClO4 shows a metallic-semiconducting transition at 120 K with magnetization anomalies at 120 and 40 K, (iii) Slightly nonstoichiometric Tl2Ru2O6.96 shows spin-glass-like behavior around 40 K accompanying a resistivity increase at the transition, (iv) Tl2Ru2O7 synthesized at 773 K and atmospheric pressure is semiconducting with magnetization anomalies at 120 and 40 K. The change from the metallic to semiconducting state is discussed from the viewpoint of structure changes. (C) 1998 Academic Press. [References: 22]
机译:在1-5 GPa和1173 K的压力下合成具有烧绿石结构的hall钌氧化物Tl2Ru2O7-δ,并通过电阻率,磁化强度和TOF中子衍射测量对其进行表征。氧空位δ随合成条件而变化,并显着影响其电性能。在高压和大气压下合成的烧绿石根据其氧的非化学计量关系分为四类:(i)非化学计量的Tl2Ru2O6.71具有几乎与温度无关的磁化强度的金属电导率。 (ii)在高氧气压力下使用KClO4合成的化学计量的Tl2Ru2O7在120 K时显示出金属-半导体跃迁,在120和40 K时出现磁化异常,(iii)轻微的非化学计量的Tl2Ru2O6.96在伴随着a的40 K附近表现出类似自旋玻璃的行为在转变过程中电阻率增加,(iv)在773 K和大气压力下合成的Tl2Ru2O7处于半导体状态,在120和40 K时发生磁化异常。从结构变化的角度讨论了从金属状态到半导体状态的变化。 (C)1998年学术出版社。 [参考:22]

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