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Quantitative Three-dimensional Modeling Of Zeotile Through Discrete Electron Tomography

机译:通过离散电子断层扫描技术对沸石进行三维定量建模

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Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object to be reconstructed, which results in an improvement of the quality of the reconstructions. Through the combination of conventional transmission electron microscopy and discrete electron tomography with a model-based approach, quantitative structure determination becomes possible. In the present work, this approach is used to unravel the building scheme of Zeotile-4, a silica material with two levels of structural order. The layer sequence of slab-shaped building units could be identified. Successive layers were found to be related by a rotation of 120°, resulting in a hexagonal space group. The Zeotile-4 material is a demonstration of the concept of successive structuring of silica at two levels. At the first level, the colloid chemical properties of Silicalite-1 precursors are exploited to create building units with a slablike geometry. At the second level, the slablike units are tiled using a triblock copolymer to serve as a mesoscale structuring agent.
机译:离散电子断层扫描是一种用于纳米尺度物体三维重建的新方法。该技术利用了要重建对象的先验知识,从而提高了重建质量。通过将常规的透射电子显微镜和离散电子层析成像与基于模型的方法相结合,定量结构的确定成为可能。在目前的工作中,此方法用于阐明Zeotile-4的建筑方案,Zeotile-4是一种具有两种结构顺序的二氧化硅材料。可以识别板状建筑单元的层序。发现相继的层与120°旋转相关,从而形成了六边形的空间群。 Zeotile-4材料证明了二氧化硅在两个级别上连续结构化的概念。在第一级,利用Silicalite-1前体的胶体化学性质来创建具有平板状几何形状的建筑单元。在第二层,使用三嵌段共聚物将平板状单元铺平以用作中尺度结构化剂。

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