Orlandi Fabio, Righi Lara, Mezzadri Francesco, Manuel Pascal, Khalyavin Dmitry D, Delmonte Davide, Pernechele Chiara, Cabassi Riccardo, Bolzoni Fulvio, Solzi Massimo, Calestani Gianluca
Dipartimento di Chimica, Università di Parma , Parco Area delle Scienze 17/A, 43124 Parma, Italy.
ISIS Pulsed Neutron Facility, STFC, Rutherford Appleton Laboratory , Chilton, Didcot, Oxfordshire OX11-0QX, United Kingdom.
Inorg Chem. 2016 May 2;55(9):4381-90. doi: 10.1021/acs.inorgchem.6b00117. Epub 2016 Apr 14.
The physical characterization and the extended crystallographic study of the double perovskite system Pb2Mn0.6Co0.4WO6 indicate an improper ferroelectric contribution to the polarization induced by the magnetic ordering. In the paramagnetic phase, the compound displays a centrosymmetric orthorhombic double perovskite structure with the Pmcn1' symmetry. The structure is strongly distorted by the lead stereoactivity. Magnetization measurements show two magnetic transitions at 188 and 9 K, but the time-of-flight neutron diffraction data provide evidence for a long-range magnetic ordering only below the second transition. Quantitative structure refinements combined with a comprehensive symmetry analysis indicate the Pm'c21' magnetic space group to be the adequate symmetry to describe the structural distortions and spin ordering in the ground state of the system. The symmetry implies a coexistence of a spontaneous ferromagnetic moment and a ferroelectric polarization along the orthogonal b- and c-axes, respectively, in the long-range ordered structure. Macroscopic measurements confirm the presence of the spontaneous polarization also below the first transition at 188 K, where only short-range magnetic correlations are evidenced by diffuse scattering in neutron diffraction.
双钙钛矿体系Pb2Mn0.6Co0.4WO6的物理特性及扩展晶体学研究表明,磁有序诱导的极化存在非本征铁电贡献。在顺磁相,该化合物呈现具有Pmcn1'对称性的中心对称正交双钙钛矿结构。铅的立体活性严重扭曲了该结构。磁化测量显示在188 K和9 K处有两个磁转变,但飞行时间中子衍射数据仅在第二个转变温度以下提供了长程磁有序的证据。定量结构精修结合全面的对称性分析表明,Pm'c21'磁空间群是描述该体系基态结构畸变和自旋有序的合适对称性。这种对称性意味着在长程有序结构中,分别沿正交的b轴和c轴存在自发铁磁矩和铁电极化的共存。宏观测量证实,在188 K的第一个转变温度以下也存在自发极化,此时中子衍射中的漫散射仅表明存在短程磁关联。