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Hierarchical self-assembly of 3D lattices from polydisperse anisometric colloids
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|作者:
Binbin Luo
Ahyoung Kim
John W. Smith
Zihao Ou
Zixuan Wu
Juyeong Kim
Qian Chen
机构:
[1] University of Illinois,Department of Materials Science and Engineering
[2] University of Illinois,Materials Research Laboratory
[3] University of Illinois,Department of Chemistry
[4] University of Illinois,Beckman Institute for Advanced Science and Technology
[5] Gyeongsang National University,Department of Chemistry and Research Institute of Natural Sciences
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Colloids are mainly divided into two types defined by size. Micron-scale colloids are widely used as model systems to study phase transitions, while nanoparticles have physicochemical properties unique to their size. Here we study a promising yet underexplored third type: anisometric colloids, which integrate micrometer and nanometer dimensions into the same particle. We show that our prototypical system of anisometric silver plates with a high polydispersity assemble, unexpectedly, into an ordered, three-dimensional lattice. Real-time imaging and interaction modeling elucidate the crucial role of anisometry, which directs hierarchical assembly into secondary building blocks—columns—which are sufficiently monodisperse for further ordering. Ionic strength and plate tip morphology control the shape of the columns, and therefore the final lattice structures (hexagonal versus honeycomb). Our joint experiment–modeling study demonstrates potentials of encoding unconventional assembly in anisometric colloids, which can likely introduce properties and phase behaviors inaccessible to micron- or nanometer-scale colloids.
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