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Selectively assembled 2D microarrays from binary nanocrystals
DOI:10.1039/c6ce00282j.png)
Abstract
En 中文
Selective self-assembly processes were identified in an aged colloidal dispersion containing CeO2 cube-like and polyhedral nanocrystals as building blocks, resulting in two types of 2D microarrays. The cube-like nanocrystals were hierarchically self-assembled to form cubic nanoblocks with a mesostructure size of ca. 100 nm and a 2D microarray size of over 100 mu m. The hierarchical assembly of the cube-like nanocrystals triggered the direct self-assembly of polyhedral nanocrystals, which then formed 2D microarrays. The hierarchical assembly of nanocrystals with a similar morphology was the dominant assembly process in the colloidal dispersion, and the cube-like nanocrystals tend to assemble through an oriented axis; otherwise, the fusion between the oriented nanocrystals is random.
Keywords:
LITHIUM-ION BATTERIES
CAPACITY ANODE MATERIAL
STRUCTURAL-CHARACTERIZATION
NANOPARTICLE SUPERLATTICES
ORIENTED ATTACHMENT
NANOCUBES
MN3O4
MESOCRYSTALS
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