Condensed Matter and Interfaces, Debye Institute for Nanomaterials Science, University Utrecht, Princetonplein 1, 3584 CC Utrecht, The Netherlands.
Nano Lett. 2013 Mar 13;13(3):1312-6. doi: 10.1021/nl400100c. Epub 2013 Feb 15.
The self-assembly of different nanocrystals into a binary superlattice is of interest for both colloidal science and nanomaterials science. New properties may emerge from the interaction between the nanocrystal building blocks that are ordered in close contact in three dimensions. Identification of the superlattice structure including its defects is of key interest in understanding the electrical and optical properties of these systems. Transmission electron microscopy (TEM) has been very instrumental to reach this goal but fails for complex crystal structures and buried defects. Here, we use electron tomography to resolve the three-dimensional crystal structure of a binary superlattice that could not be resolved by TEM only. The structure with a [PbSe]6[CdSe]19 stoichiometry has no analogue in the atomic world. Moreover we will show how tomography can overcome the clouding effects of planar defects on structure identification by TEM.
不同纳米晶体自组装成二元超晶格,这在胶体科学和纳米材料科学中都很有意义。在三维上紧密接触的纳米晶构建块之间的相互作用可能会产生新的性质。超晶格结构的确定,包括其缺陷,对于理解这些体系的电学和光学性质至关重要。透射电子显微镜(TEM)在实现这一目标方面非常重要,但对于复杂的晶体结构和埋藏的缺陷却无能为力。在这里,我们使用电子断层扫描来解析仅通过 TEM 无法解析的二元超晶格的三维晶体结构。这种具有 [PbSe]6[CdSe]19 化学计量比的结构在原子世界中没有类似物。此外,我们将展示断层扫描如何克服 TEM 上平面缺陷对结构识别的模糊效应。