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再探退火温度对LaFeMnO磁性的影响

A revisit to the effect of annealing temperature on magnetic properties of LaFeMnO.

作者信息

Dutta Uma, Ghosh Debamalya, Haque Ariful, Kumar Lalit, Mandal Tapas Kumar, Walke Pravin S, Pal Kamalesh, Gayen Arup, Kundu Asish K, Seikh Md Motin

机构信息

Department of Chemistry, Visva-Bharati, Santiniketan 731235, West Bengal, India.

出版信息

J Phys Condens Matter. 2019 Jun 5;31(22):225801. doi: 10.1088/1361-648X/ab0b98. Epub 2019 Feb 28.

Abstract

We report an experimental study for the structural and magnetic properties of highly pure LaFeMnO perovskite phase. The impurity free LaFeMnO has been prepared by sol-gel technique at 500 °C and annealed at different temperatures up to 1000 °C. Previous works on LaFeMnO revealed presence of secondary phases along with contradicting magnetic properties. Such as, Bhame et al (2005 Phys. Rev. B 72 054426-7) reported the superparamagnetic or spin-glass like behavior for 200 °C treated sample that persisted even at 700 °C sample. However, Wei et al (2012 Mater. Chem. Phys. 136 755-61) claimed room temperature ferromagnetism in all the samples annealed in the range of 600 °C-700 °C where the saturation magnetization decreases with the increase in temperature. These contradicting results lead us to revisit the effect of annealing temperature on the magnetic properties of LaFeMnO. We noticed a gradual increase in magnetization with increase in annealing temperatures without any signature of long range spin ordering for pure single phase samples. The increased magnetic moment with annealing temperatures has been attributed to the suppression of surface contribution of disordered spin. The low temperature magnetic behaviors can be explained by the interacting cluster glass behavior for the pristine as well as for 1000 °C annealed samples.

摘要

我们报道了一项关于高纯LaFeMnO钙钛矿相结构和磁性的实验研究。通过溶胶 - 凝胶技术在500°C制备了无杂质的LaFeMnO,并在高达1000°C的不同温度下进行退火。先前关于LaFeMnO的研究表明存在次生相以及相互矛盾的磁性。例如,Bhame等人(2005年,《物理评论B》72卷,054426 - 7页)报道了200°C处理的样品具有超顺磁性或类似自旋玻璃的行为,这种行为在700°C的样品中仍然存在。然而,Wei等人(2012年,《材料化学与物理》136卷,755 - 61页)声称在600°C - 700°C范围内退火的所有样品中都存在室温铁磁性,其中饱和磁化强度随温度升高而降低。这些相互矛盾的结果促使我们重新审视退火温度对LaFeMnO磁性的影响。我们注意到,对于纯单相样品,随着退火温度的升高,磁化强度逐渐增加,且没有任何长程自旋有序的迹象。随着退火温度升高磁矩增加归因于无序自旋表面贡献的抑制。对于原始样品以及1000°C退火样品,低温磁行为可以用相互作用的团簇玻璃行为来解释。

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