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Photoelectron Holographic Atomic Arrangement Imaging of Cleaved Bimetal-intercalated Graphite Superconductor Surface

机译:分裂双金属插层石墨超导体表面的光电子全息原子排列成像。

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摘要

From the C 1s and K 2p photoelectron holograms, we directly reconstructed atomic images of the cleaved surface of a bimetal-intercalated graphite superconductor, (Ca, K)C8, which differed substantially from the expected bulk crystal structure based on x-ray diffraction (XRD) measurements. Graphene atomic images were collected in the in-plane cross sections of the layers 3.3 Å and 5.7 Å above the photoelectron emitter C atom and the stacking structures were determined as AB- and AA-type, respectively. The intercalant metal atom layer was found between two AA-stacked graphenes. The K atomic image revealing 2 × 2 periodicity, occupying every second centre site of C hexagonal columns, was reconstructed, and the Ca 2p peak intensity in the photoelectron spectra of (Ca, K)C8 from the cleaved surface was less than a few hundredths of the K 2p peak intensity. These observations indicated that cleavage preferentially occurs at the KC8 layers containing no Ca atoms.
机译:从C 1s和K 2p光电子全息图中,我们直接重建了双金属插层的石墨超导体(Ca,K)C8的分裂表面的原子图像,该图像与基于x射线衍射的预期体晶结构有很大不同( XRD)测量。石墨烯原子图像收集在光电子发射体C原子上方3.3Å和5.7Å的层内横截面中,并且将堆叠结构分别确定为AB型和AA型。在两个AA堆叠的石墨烯之间发现了嵌入金属原子层。重建了显示2×2周期性的K原子图像,该图像占据了C六角形圆柱的第二个中心点,并且从劈开表面(Ca,K)C8的光电子光谱中的Ca 2p峰强度小于百分之几K 2p峰值强度。这些观察结果表明裂解优先发生在不含Ca原子的KC8层上。

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