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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Solid-state reactivity explored in situ by synchrotron radiation on single crystals: from SrFeO2.5 to SrFeO3 via electrochemical oxygen intercalation
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Solid-state reactivity explored in situ by synchrotron radiation on single crystals: from SrFeO2.5 to SrFeO3 via electrochemical oxygen intercalation

机译:固态反应物通过同步加速器辐射在单晶上进行原位探索:通过电化学氧嵌入从SrFeO2.5到SrFeO3

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In this study we demonstrate the feasibility of following up a chemical reaction by single crystal x-ray (synchrotron) diffraction under operando conditions, carried out in a specially designed electrochemical cell mounted on the BM01A at the European Synchrotron Radiation Facility (ESRF). We investigated in detail the electrochemical oxidation of SrFeO2.5 to SrFeO3 on a spherical single crystal of 70 mu m diameter by in situ diffraction at an ambient temperature. Complete data sets were obtained by scanning the whole reciprocal space using a 2M Pilatus detector, resulting in 3600 frames with a resolution of 0.1 degrees per data set, each obtained in 18 min. The crystal was mounted in a specially designed electrochemical cell with 1N KOH used as the electrolyte. During the electrochemical oxidation, the reaction proceeds following the phase sequence SrFeO2.5/SrFeO2.75/SrFeO2.875/SrFeO3, structurally accompanied by establishing a complex series of long-range oxygen vacancy ordering, which gets instantly organized at ambient temperature. The topotactic reaction pathway is discussed in terms of the evolution of the twin domain structure. The formation of SrFeO2.875 is accompanied by the formation of diffuse streaks along the [1 0 0]-direction of the perovskite cell, reaching high d-spacings. The diffuse streaks are discussed and are thought to originate from a modified twin structure induced by the SrFeO2.75 to SrFeO2.875 transition, and the associated changes in the domain structure, developed during the oxygen intercalation. We equally analysed and discussed in detail the twin structure of all the title compounds. We confirm the ground state of SrFeO2.5 is able to adopt the Imma space group symmetry, showing stacking faults of the tetrahedral layers along the stacking axis of the brownmillerite unit cell, indicated by the 1D diffuse rods. We showed that in situ single crystal diffraction has huge potential in the study of non-stoichiometric compounds under operando conditions, in order to obtain structural information i.e. about diffuse scattering, and microstructural information related to domain effects such as twinning-information far beyond that which powder diffraction methods allow us to obtain.
机译:在这项研究中,我们证明了在操作条件下通过单晶X射线(同步加速器)衍射进行化学反应的可行性,该反应是在欧洲同步辐射器(ESRF)上安装在BM01A上的特殊设计的电化学电池中进行的。我们在环境温度下通过原位衍射详细研究了直径70微米的球形单晶上SrFeO2.5电化学氧化成SrFeO3。通过使用2M Pilatus检测器扫描整个倒数空间获得完整的数据集,从而得到3600帧,每个数据集的分辨率为0.1度,每个帧在18分钟内获得。将晶体安装在专门设计的电化学电池中,其中1N KOH作为电解质。在电化学氧化过程中,反应按照相序SrFeO2.5 / SrFeO2.75 / SrFeO2.875 / SrFeO3进行,在结构上伴随着一系列复杂的长距离氧空位排列,在环境温度下可立即组织起来。根据双结构域结构的演变,讨论了全阳离子反应途径。 SrFeO2.875的形成伴随着钙钛矿电池[1 0 0]方向上弥漫性条纹的形成,达到了高d间距。讨论了弥散条纹,并认为其起源于由SrFeO2.75过渡到SrFeO2.875的转变引起的修饰孪晶结构,以及在氧嵌入过程中形成的畴结构相关变化。我们均等地分析和详细讨论了所有标题化合物的孪生结构。我们确认了SrFeO2.5的基态能够采用Imma空间群对称性,显示了沿一维弥散体单元的堆叠轴沿四面体层的堆叠缺陷,由一维扩散棒指示。我们表明,原位单晶衍射在操作条件下的非化学计量化合物的研究中具有巨大的潜力,以便获得结构信息(即有关散射的信息)以及与畴效应(例如孪晶信息)有关的微观结构信息,远远超出了粉末衍射法使我们获得。

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