Hierarchical self-assembly of suspended branched colloidal nanocrystals into superlattice structures

Karol Miszta*, Joost de Graaf, Giovanni Bertoni, Dirk Dorfs, Rosaria Brescia, Sergio Marras, Luca Ceseracciu, Roberto Cingolani, Rene van Roij, Marjolein Dijkstra, Liberato Manna

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract / Description of output

Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biology. The number of superstructures realized by self-assembly of man-made nanoscale units is also growing. However, assemblies of colloidal inorganic nanocrystals(1-3) are still at an elementary level, not only because of the simplicity of the shape of the nanocrystal building blocks and their interactions, but also because of the poor control over these parameters in the fabrication of more elaborate nanocrystals. Here, we show how monodisperse colloidal octapod-shaped nanocrystals self-assemble, in a suitable solution environment, on two sequential levels. First, linear chains of interlocked octapods are formed, and subsequently the chains spontaneously self-assemble into three-dimensional superstructures. Remarkably, all the instructions for the hierarchical self-assembly are encoded in the octapod shape. The mechanical strength of these superstructures is improved by welding the constituent nanocrystals together.

Original languageEnglish
Pages (from-to)872-876
Number of pages5
JournalNature Materials
Volume10
Issue number11
DOIs
Publication statusPublished - Nov 2011

Keywords / Materials (for Non-textual outputs)

  • BINARY NANOPARTICLE SUPERLATTICES
  • INORGANIC NANOPARTICLES
  • BUILDING-BLOCKS
  • CATION-EXCHANGE
  • CRYSTALLIZATION
  • NANORODS
  • FORCES
  • GROWTH
  • CDSE

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