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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >All Roads Lead to TiO2: TiO2-Rich Surfaces of Barium and Strontium Titanate Prepared by Hydrothermal Synthesis
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All Roads Lead to TiO2: TiO2-Rich Surfaces of Barium and Strontium Titanate Prepared by Hydrothermal Synthesis

机译:所有道路通向TiO2:通过水热合成制备的富含钡和锶钛合金的TiO2的表面

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摘要

Through high-resolution electron microscopy, the surface structure of barium titanate and strontium titanate nanoparticles are found to be terminated by a TiO2 double layer. These results confirm prior observations of TiO2-rich surface reconstructions on strontium titanate nanoparticles made hydrothermally at high pH and single crystals prepared with wet chemical etching. Of all the reconstructions observed on single crystals for these two materials, we report for first time the root 13 X root 13R33.7 degrees structure on the {001} facets of hydrothermally prepared barium titanate and strontium titanate nanocrystals. The aqueous environment common to the two preparation methods preferentially leaves strontium and barium depleted from the A-sites near the surface and leads to TiO2-terminated surfaces for both materials. Analysis indicates that the observed structures are the thermodynamic lowest energy structures in aqueous conditions.
机译:通过高分辨率电子显微镜,发现钛酸钡和钛酸锶纳米粒子的表面结构被TiO 2双层终止。 这些结果证实了在高pH和用湿化学蚀刻制备的高pH和单晶中加热的钛酸锶纳米颗粒上的TiO 2的表面重建的现有观察。 在对这两种材料的单晶中观察到的所有重建中,我们首次报告了热热制备钛酸钡和钛酸锶纳米晶体的{001}刻面上的根13 x根13R33.7度。 两种制备方法共同的含水环境优先离开锶和钡从表面附近的A-位点脱落,并导致两种材料的TiO 2封端的表面。 分析表明观察到的结构是水性条件下的热力学最低能量结构。

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