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Self‐Organization of Anisotropic and Binary Colloids in Thermo‐Switchable 1D Microconfinement
Authors:Ping Liu  Lingxiang Jiang  Anke Kuijk  Henriëtte E. Bakker  Arnout Imhof  Alfons van Blaaderen  Jianbin Huang  Willem K. Kegel  Albert P. Philipse  Andrei V. Petukhov
Affiliation:1. Van't Hoff Laboratory for Physical and Colloid Chemistry, Debye Institute for Nanomaterials Science, Utrecht University, CH, Utrecht, The Netherlands;2. Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing, China;3. Soft Condensed Matter, Debye Institute for Nanomaterials Science, Utrecht University, CC, Utrecht, The Netherlands
Abstract:
Anisotropic and binary colloids self‐assemble into a variety of novel supracolloidal structures within the thermo‐switchable confinement of molecular microtubes, achieving structuring at multiple length scales and dimensionalities. The multistage self‐assembly strategy involving hard colloidal particles and a soft supramolecular template is generic for colloids with different geometries and materials as well as their binary mixtures. The colloidal architectures can be controlled by colloid shape, size, and concentration. Colloidal cubes align in chains with face‐to‐face arrangement, whereas rod‐like colloids predominantly self‐organize in end‐to‐end configurations with their long axis parallel with the long axis of the microtubes. The 1D microconfinement imposed on binary mixtures of anisotropic and isotropic colloids further increases the diversity of colloid‐in‐tube structures. In cube–sphere mixtures, cubes may act as additional confiners, locking in colloidal sphere chains, while a “colloidal Morse code” is generated where rods and spheres alternate in the case of rod–sphere mixtures. The versatile confined colloidal superstructures including their thermoresponsive assembly and disassembly are relevant for the development of stimulus–responsive materials where controlled release and encapsulation are desired.
Keywords:anisotropy  colloids  confinement  self‐assembly  thermo‐reversibility
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