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国家自然科学基金(51332002)

作品数:2 被引量:3H指数:1
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相关机构:中国科学院大学上海科技大学中国科学院上海高等研究院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:理学机械工程更多>>

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软X射线光子关联谱装置设计
2019年
X射线光子关联谱技术(X-ray Photon Correlation Spectroscopy,XPCS)是一种利用相干X光散射的二次相干,研究凝聚态物质在小尺度范围弛豫动力学的新技术,对入射光的相干性有较高要求。上海同步辐射光源BL08U干涉光刻分支线站(X-ray Interference Lithograph,XIL)采用椭圆偏振波荡器作为光源,具有很好的相干性,光子通量高,适合铁电体、磁性材料中介观尺度电极性或磁性微区的动力学研究。由此设计一套基于软X射线的光子关联谱装置,采用软X射线为入射相干光,对二次相干光采集、转换、放大处理之后进行自相关运算。该装置测量的样品周期尺度范围为10~60 nm。该装置的研制设计为更好地分析材料动力学信息提供了一种技术途径,是硬X射线的有效补充。
屈斯诗郭智邰仁忠邰仁忠刘海岗张祥志
关键词:软X射线动力学
Ferroelectric domains and phase transition of sol-gel processed epitaxial Sm-doped BiFeO_(3)(001)thin films被引量:3
2018年
BiFeO_(3),a room-temperature multiferroic material,has recently been increasingly applied as a potential lead-free piezoelectric material due to its large piezoelectricity achieved by doping.In this work,12%Smdoped BiFeO_(3)epitaxial thin films were fabricated on Nb-doped SrTiO_(3)(001)single crystal substrates via sol-gel method.The epitaxy was verified by reciprocal space mapping(RSM)and transmission electron microscope(TEM).The TEM results indicated the coexistence of R3c and Pbam phases in the film.The domains and piezoelectric properties from room temperature to 200℃were characterized by piezoresponse force microscopy(PFM).Domains became active from 110℃to 170℃,and domain configurations changed obviously.A partially fading piezoresponse indicated the emergence of antiferroelectric Pbam.The in-situ domain analysis suggested that the phase transition was accompanied by domain wall motion.Switching spectroscopy PFM(SS-PFM)was further conducted to investigate the piezoresponse during the phase transition.Anomalous responses were found in both ON and OFF states at 170℃,and the film exhibits typical antiferroelectric behavior at 200℃,implying that the completion of phase transition and structure turned to the Pbam phase.This work revealed the origin of the high piezoresponse of Sm-doped BiFeO_(3)thin films at the morphotropic phase boundary(MPB).
Zhen ZhouWei SunZhenyu LiaoShuai NingJing ZhuJing-Feng Li
关键词:ANTIFERROELECTRIC
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