4.7 Article

Composition dependent magnetic and ferroelectric properties of hydrothermally synthesized GdFe1-xCrxO3 ( 0.1 ≤x ≤ 0.9) perovskites

期刊

DALTON TRANSACTIONS
卷 46, 期 18, 页码 5930-5937

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7dt00032d

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资金

  1. National Natural Science Foundation [21576112]
  2. Natural Science Foundation Project of Jilin Province [20150623024TC-19]
  3. Science and Technology Development Plan of Siping City [2015049]

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The hydrothermal synthesis and magnetic, dielectric and ferroelectric property characterization of ABO(3)(-) perovskite GdFe1-xCrxO3 (0 < x < 1) are reported. The mineralizer KOH plays a critical role in the perovskite structure of the sample. The Fe/Cr ratio of the final crystal is controlled by the alkalinity in the initial reaction mixtures. The lattice parameters and magnetic ordering transition temperature have a close relationship with the Fe/Cr ratio. The temperature dependent magnetic properties of GdFe1-xCrxO3 (0 < x < 1) samples show a close relationship with substituent ratios of Cr3+. The occurrence of ferromagnetic behavior in all of the as-prepared samples comes from the coexistence of canted-antiferromagnetism due to the double exchange effect of Fe-O-Fe and Cr-O-Cr and ferromagnetism due to superexchange interaction of Fe-O-Cr. A large spontaneous polarization was observed in GdFe1-xCrxO3 at room temperature, exhibiting a clear ferroelectric hysteresis loop, which indicates the ferroelectric behavior in this system. This work not only provides an effective route to the controllable synthesis of B-site doped REFe1-xCrxO3 perovskite structure materials, but also presents a comprehensive study of the tunable effect of ionic doping on ferroelectric properties.

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