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PbMn7O12钙钛矿的自旋驱动多铁性特性

Spin-Driven Multiferroic Properties of PbMn7O12 Perovskite.

作者信息

Belik Alexei A, Glazkova Yana S, Terada Noriki, Matsushita Yoshitaka, Sobolev Alexey V, Presniakov Igor A, Tsujii Naohito, Nimori Shigeki, Takehana Kanji, Imanaka Yasutaka

机构信息

International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science (NIMS) , Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan.

Department of Chemistry, Lomonosov Moscow State University , Leninskie Gory, 119992 Moscow, Russia.

出版信息

Inorg Chem. 2016 Jun 20;55(12):6169-77. doi: 10.1021/acs.inorgchem.6b00774. Epub 2016 May 27.

Abstract

We synthesize PbMn7O12 perovskite under high-pressure (6 GPa) and high-temperature (1373 K) conditions and investigate its structural, magnetic, dielectric, and ferroelectric properties. We find that PbMn7O12 exhibits rich physical properties from interplay among charge, orbital, and spin degrees of freedom and rich structural properties. PbMn7O12 crystallizes in space group R3̅ near room temperature and shows a structural phase transition at TCO = 397 K to a cubic structure in space group Im3̅; the Im3̅-to-R3̅ transition is associated with charge ordering. Below TOO = 294 K, a structural modulation transition associated with orbital ordering takes place. There are two magnetic transitions with Néel temperatures of TN1 = 83 K and TN2 = 77 K and probably a lock-in transition at TN3 = 43 K (on cooling). There is huge hysteresis on specific heat (between ∼37 and 65 K at 0 Oe), dielectric constant (between ∼20 and 70 K at 0 Oe), and dc and ac magnetic susceptibilities around the lock-in transition. Sharp dielectric constant, dielectric loss, and pyroelectric current anomalies are observed at TN2, indicating that electric polarization is developed at this magnetic transition, and PbMn7O12 perovskite is a spin-driven multiferroic. Polarization of PbMn7O12 is measured to be ∼4 μC/m(2). Field-induced transitions are detected at ∼63 and ∼170 kOe at 1.6-2 K; similar high-magnetic field properties are also found for CdMn7O12, CaMn7O12, and SrMn7O12. PbMn7O12 exhibits a quite small magnetodielectric effect, reaching approximately -1.3 to -1.7% at 10 K and 90 kOe.

摘要

我们在高压(6吉帕斯卡)和高温(1373开尔文)条件下合成了钙钛矿PbMn7O12,并研究了其结构、磁性、介电和铁电性能。我们发现,PbMn7O12由于电荷、轨道和自旋自由度之间的相互作用而展现出丰富的物理性质以及丰富的结构性质。PbMn7O12在室温附近结晶于空间群R3̅,并在TCO = 397 K时发生结构相变,转变为空间群Im3̅的立方结构;从Im3̅到R3̅的转变与电荷有序化有关。在TOO = 294 K以下,发生了与轨道有序化相关的结构调制转变。存在两个奈尔温度分别为TN1 = 83 K和TN2 = 77 K的磁转变,并且在冷却时可能在TN3 = 43 K发生锁定转变。在锁定转变附近,比热(在0奥斯特时约37至65 K之间)、介电常数(在0奥斯特时约20至70 K之间)以及直流和交流磁化率都存在巨大的磁滞现象。在TN2处观察到尖锐的介电常数、介电损耗和热释电电流异常,表明在这个磁转变处产生了电极化,并且PbMn7O12钙钛矿是一种自旋驱动的多铁性材料。测量得到PbMn7O12的极化强度约为4 μC/m²。在1.6 - 2 K时,在约63和约170千奥斯特处检测到场致转变;对于CdMn7O12、CaMn7O12和SrMn7O12也发现了类似的高磁场性质。PbMn7O12表现出相当小的磁电效应,在10 K和90千奥斯特时达到约 -1.3%至 -1.7%。

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