DOE OSTI · 2570565
Directing Polymorphism of Colloid Crystals Using Conformational Entropy of Polymer Chains
Abstract
Controlling the polytypes of close-packed structures of spherical colloids is still a challenging problem despite their wide occurrence. Here, in this work, we show that systematic engineering of the polytype structures of close-packed colloids is possible by using the conformational entropy of polymer chains confined in the interstitial space of colloid crystals. Our interstitial space analysis shows that the hexagonal close-packed (HCP) structures offer larger local interstitial space domains, and the structure director chains in favor of HCP counteract the entropic advantages of the face-centered cubic (FCC) lattices. Using model block copolymer colloids and the known lattice entropy of FCC, a proportionality parameter, β CP = 1.91 × 10 –3 ± 3.67 × 10 –4 , for quantifying the conformational entropy contribution toward HCP structures is extracted. This work demonstrates that the interstitial space of colloid crystals serves as a new structure engineering tool for the self-assembly of colloids.
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Ahn, Juhong [Rensselaer Polytechnic Inst., Troy, NY (United States)], Lee, Hanseung [Univ. of Minnesota, Minneapolis, MN (United States)], Wąsik, Patryk [Brookhaven National Laboratory (BNL), Upton, NY (United States). National Synchrotron Light Source II (NSLS-II)] (ORCID:0000000274477472), Lee, Sangwoo [Rensselaer Polytechnic Inst., Troy, NY (United States)] (ORCID:0000000342150317). 2025-06-11. Directing Polymorphism of Colloid Crystals Using Conformational Entropy of Polymer Chains. https://doi.org/10.1021/acs.macromol.5c00749
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