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Electron tomography and 3D molecular simulations of platinum nanocrystals

机译:电子断层扫描和三维分子模拟铂纳米晶体

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This work reports on the morphology of individual platinum nanocrystals with sizes of about 5 nm. By using the electron tomography technique that gives 3D spatial selectivity, access to quantitative information in the real space was obtained. The morphology of individual nanoparticles was characterized using HAADF-STEM tomography and it was shown to be close to a truncated octahedron. Using molecular dynamics simulations, this geometrical shape was found to be the one minimizing the nanocrystal energy. Starting from the tomographic reconstruction, 3D crystallographic representations of the studied Pt nanocrystals were obtained at the nanometer scale, allowing the quantification of the relative amount of the crystallographic facets present on the particle surface.
机译:这项工作报告个人的形态铂纳米晶体的大小大约5海里。通过使用电子断层扫描技术给3 d空间选择性访问权定量信息在现实空间获得的。使用HAADF-STEM纳米颗粒为特征断层扫描显示接近截断八面体。模拟,这种几何形状被发现的纳米晶体的能量最小化。从层析重建3 d晶体的表征研究在纳米Pt纳米晶体了规模、允许的量化晶体的相对数量方面在粒子表面。

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