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首页> 外文期刊>International Journal of Quantum Chemistry >Structural and magnetic characterization of RCrO4 oxides (R = Nd, Er and Tm)
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Structural and magnetic characterization of RCrO4 oxides (R = Nd, Er and Tm)

机译:RCrO4氧化物的结构和磁性表征(R = Nd,Er和Tm)

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The crystal and magnetic structure of RCrO4 Oxides (R = Nd, Er and Tin) has been studied by owder neutron diffraction. These compounds crystallize with the zircon-type structure, showing tetragonal symmetry, space group I4(1)/amd. In the case of NdCrO4, magnetic susceptibility measurements reveal the existence of an antiferromagnetic ordering in which both Cr5+ and Nd3+ sublattices are involved. This ordering has been explained on the basis of a propagation vector k = 0 and a collinear structure, described by the symmetry mode A(x), the ordered magnetic moments being 0.62 and 0.66 mu(B) at 2 K for Nd3+ and Cr5+, respectively. Magnetic susceptibility and magnetization measurements reveal that both ErCrO4 and TmCrO4 behave as ferromagnetic compounds with a Curie temperature of 15 and 18 K, respectively. Rietveld refinement of the neutron diffraction data for ErCrO4 yields a collinear magnetic structure described with an F-x mode. In the case of the TmCrO4 oxide, the ferromagnetic sublattices of Tm3+ and Cr5+ are aligned antiparallel in the a-b plane, while along the c-axis the magnetic moments point to the same direction. In both compounds, the rather small values obtained for the Er3+ and Tm3+ ordered moments compared with the theoretical ones have been attributed to crystal field effects. The differences in the ferromagnetic structure of these compounds have been explained as the result of the higher rare-earth anisotropy of Tm3+ when compared with Er3+ for which no magnetic component is present along the c-direction. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 15]
机译:通过中子衍射研究了RCrO4氧化物(R = Nd,Er和锡)的晶体和磁性结构。这些化合物以锆石型结构结晶,表现出四方对称性,空间群为I4(1)/ amd。在NdCrO4的情况下,磁化率测量表明存在反铁磁排序,其中Cr5 +和Nd3 +子晶格都涉及到。该顺序是根据传播矢量k = 0和共线结构(用对称模式A(x)描述)解释的,Nd3 +和Cr5 +的有序磁矩在2 K时为0.62和0.66 mu(B),分别。磁化率和磁化强度测量结果表明,ErCrO4和TmCrO4均表现为居里温度分别为15 K和18 K的铁磁化合物。对ErCrO4的中子衍射数据进行Rietveld精修可得到用F-x模式描述的共线磁性结构。在使用TmCrO4氧化物的情况下,Tm3 +和Cr5 +的铁磁亚晶格在a-b平面中反平行排列,而沿c轴的磁矩指向同一方向。在两种化合物中,与理论值相比,Er3 +和Tm3 +有序矩获得的值都很小,这归因于晶体场效应。与不沿c方向存在磁性成分的Er3 +相比,Tm3 +的稀土各向异性更高,可以解释这些化合物的铁磁结构的差异。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:15]

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