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Study of Phase Transformations on Nano-Crystalline (La,Sr)(Mn,Fe)O3 Systems by High-Pressure M?ssbauer Spectroscopy

机译:高压MαSsbauer光谱法研究纳米结晶(La,Sr)(Mn,Fe)O3系统的相变性研究

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We report pressure-dependent 57Fe M?ssbauer studies on a nano-crystalline perovskite La0.8Sr0.2(Mn0.8Fe0.2) O3 system up to 10 GPa using diamond anvil cell. At ambient pressure, iron is present as Fe3+ and Fe4+ in two different environments. Pressure seems to affect the higher symmetry site of Fe4+, while the octahedral site containing Fe3+ remains almost unaffected. Phase transformations are observed at pressures 0.52 GPa and 3.7 GPa respectively. A sudden increase in the isomer shift at 0.52 GPa is related to the reduction of Fe4+ ions while at 3.7 GPa, a structural transition is observed with sudden drop in isomer shift indicating Fe3+ ions in identical environment. Quadrupole splittings increase continuously with pressures up to 10 GPa.
机译:我们通过金刚石砧座细胞报告对纳米结晶钙钛矿La0.8SR0.2(MN0.8FE0.2)O3系统的压力依赖性57Fe M?SSBauer研究。在环境压力下,铁以两种不同的环境中的Fe3 +和Fe4 +存在。压力似乎影响Fe4 +的较高对称性位点,而含有Fe3 +的八面体部位几乎不受影响。分别观察到相变0.52GPa和3.7GPa。在0.52GPa下异构体偏移的突然增加与Fe4 +离子的减少有关,而在3.7GPa时,在异构体变化中突然下降观察到结构转变,表明在相同环境中的Fe3 +离子。 Quadrupole分裂连续增加,压力高达10GPa。

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