论文标题
Bifeo3/ndfeo3超晶格的抗极性状态
Anti-polar state in BiFeO3/NdFeO3 superlattices
论文作者
论文摘要
抗抗逆电电源是高能密度电容器的有前途的材料,并积极追求环保和高效的系统。创建和设计新的(反)铁族系统的优雅策略依赖于纳米级超级晶格的使用。我们在这里报告了这种策略的使用以及使用高分辨率X射线衍射和透射电子显微镜的纳米级BifeO3/NDFEO3超晶格的制造。原子量表的结构分析表明,这种超晶格寄主的抗极性排序最有可能由抗抗逆抗抗逆抗极性施加。抗极性状态和结构过渡的温度依赖性进一步暗示,抗极性状态的稳定性受堆叠内的BifeO3层厚度控制,并以更中等的方式通过层间菌株来控制。在超级晶格中发现了这种极地布置,并可能对整个稀土家族的概括铺平了通往新平台的储能应用以及纳米电子设备的道路。
Antiferroelectrics are promising materials for high energy density capacitors and the search for environmentally-friendly and efficient systems is actively pursued. An elegant strategy to create and design new (anti)ferroic system relies on the use of nanoscale superlattices. We report here the use of such strategy and the fabrication of nanoscale BiFeO3/NdFeO3 superlattices and in depth characterization using high resolution X-ray diffraction and Transmission Electron Microscopy. The structural analysis at atomic scale demonstrates that such superlattices host anti-polar ordering most likely described by an antiferroelectric-like Pbnm symmetry. Temperature dependence of anti-polar state and structural transition further hint that the stability of the anti-polar state is controlled by the BiFeO3 layer thickness within the stacking and, in a more moderate way, by interlayer strain. Discovery of such polar arrangement in superlattices and the possible generalization to the whole rare-earth family pave the way to new platforms for energy storage application as well as nano-electronic devices.