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Direct Imaging Of Reconstructed Atoms On Tio_2 (110) Surfaces

机译:在Tio_2(110)表面上重建原子的直接成像

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Determining the atomic structures of oxide surfaces is critical for understanding their physical and chemical properties but also challenging because the breaking of atomic bonds in the formation of the surface termination can involve complex reconstructions. We used advanced transmission electron microscopy to directly observe the atomic structure of reduced titania (TiO_2) (110) surfaces from directions parallel to the surface. In our direct atomic-resolution images, reconstructed titanium atoms at the top surface layer are clearly imaged and are found to occupy the interstitial sites of the TiO_2 structure. Combining observations from two orthogonal directions, the three-dimensional positioning of the Ti interstitials is identified at atomic dimensions and allows a resolution of two previous models that differ in their oxygen stoichiometries.
机译:确定氧化物表面的原子结构对于理解其物理和化学性质至关重要,但也具有挑战性,因为在表面终止剂的形成过程中原子键的断裂可能涉及复杂的重构。我们使用先进的透射电子显微镜直接从平行于表面的方向观察还原的二氧化钛(TiO_2)(110)表面的原子结构。在我们的直接原子分辨率图像中,清晰地成像了上表层的重建钛原子,并发现它们占据了TiO_2结构的间隙位置。结合从两个正交方向观察到的结果,Ti间隙的三维定位在原子尺寸上得以识别,并允许解析两个先前模型的氧化学计量不同。

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