Structural diversity in three-dimensional self-assembly of nanoplatelets by spherical confinement

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Abstract

Nanoplatelets offer many possibilities to construct advanced materials due to new properties associated with their (semi)two-dimensional shapes. However, precise control of both positional and orientational order of the nanoplatelets in three dimensions, which is required to achieve emerging and collective properties, is challenging to realize. Here, we combine experiments, advanced electron tomography and computer simulations to explore the structure of supraparticles self-assembled from nanoplatelets in slowly drying emulsion droplets. We demonstrate that the rich phase behaviour of nanoplatelets, and its sensitivity to subtle changes in shape and interaction potential can be used to guide the self-assembly into a wide range of different structures, offering precise control over both orientation and position order of the nanoplatelets. Our research is expected to shed light on the design of hierarchically structured metamaterials with distinct shape- and orientation- dependent properties.

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Wang, D., Hermes, M., Najmr, S., Tasios, N., Grau-Carbonell, A., Liu, Y., … van Blaaderen, A. (2022). Structural diversity in three-dimensional self-assembly of nanoplatelets by spherical confinement. Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-33616-y

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