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The Study of Charge Transfer Mechanism in Single Crystal Iron Perovskite

단결정 철 페롭스카이트의 전하전이 연구

  • Uhm Young-Rang (Nuclear Nanomaterials Development Lab. Korea Energy Research Institute (KAERI)) ;
  • Rhee Chang-Kyu (Nuclear Nanomaterials Development Lab. Korea Energy Research Institute (KAERI)) ;
  • Kim Chul-Sung (Department of Nano-electro Physics, Kookmin University)
  • 엄영랑 (한국원자력연구소, 원자력나노소재응용랩) ;
  • 이창규 (한국원자력연구소, 원자력나노소재응용랩) ;
  • 김철성 (국민대학교 나노전자물리과)
  • Published : 2006.04.01

Abstract

[ $R_{1/3}Sr_{2/3}FeO_{3}$ ](R=Pr, Nd, and Sm) was synthesized and their magnetic properties and charge ordering(CO) transition related with lattice dynamics and oxygen vacancy were systematically investigated. The charge disproportion ation(CD) in $R_{1/3}Sr_{2/3}FeO_{3}$(R=Pr,Nd) was in which two kins of iron with valence state $Fe^{3+}$ and $Fe^{5+}$ were found with ratio of 2:1. In this charge ordering state a sequence of $Fe^{3+}Fe^{3+}Fe^{5+}Fe^{3+}Fe^{3+}Fe^{5+}$ exists aligned along the [111] direction of the pseudocubic perovskite structure. The charge ordering exist in distorted structure involving $t_{pd}$ hybridization. The disordering phases coexist in distorted structure as temprature in creases that is controlled amount of oxygen vacancy. The magnetic hyperfine fields indicate charge tranfering temperature as it dissapeared drastically.

Keywords

References

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