Self Assembly of Soft Matter Quasicrystals and Their Approximants
arXiv:1102.5589 · doi:10.1073/pnas.1019763108
Abstract
The surprising recent discoveries of quasicrystals and their approximants in soft matter systems poses the intriguing possibility that these structures can be realized in a broad range of nano- and micro-scale assemblies. It has been theorized that soft matter quasicrystals and approximants are largely entropically stabilized, but the thermodynamic mechanism underlying their formation remains elusive. Here, we use computer simulation and free energy calculations to demonstrate a simple design heuristic for assembling quasicrystals and approximants in soft matter systems. Our study builds on previous simulation studies of the self-assembly of dodecagonal quasicrystals and approximants in minimal systems of spherical particles with complex, highly-specific interaction potentials. We demonstrate an alternative entropy-based approach for assembling dodecagonal quasicrystals and approximants based solely on particle functionalization and shape, thereby recasting the interaction-potential-based assembly strategy in terms of simpler-to-achieve bonded and excluded-volume interactions. Here, spherical building blocks are functionalized with mobile surface entities to encourage the formation of structures with low surface contact area, including non-close-packed and polytetrahedral structures. The building blocks also possess shape polydispersity, where a subset of the building blocks deviate from the ideal spherical shape, discouraging the formation of close-packed crystals. We show that three different model systems with both of these features -- mobile surface entities and shape polydispersity -- consistently assemble quasicrystals and/or approximants. We argue that this design strategy can be widely exploited to assemble quasicrystals and approximants on the nano- and micro- scales. In addition, our results further elucidate the formation of soft matter quasicrystals in experiment.
12 pages 6 figures
References in corpus (9)
- Disordered, Quasicrystalline and Crystalline Phases of Densely Packed Tetrahedra
- A Geometric Theory of Diblock Copolymer Phases
- Soft quasicrystals - Why are they stable?
- Complex crystal structures formed by the self assembly of di-tethered nanospheres
- Characterizing Structure Through Shape Matching and Applications to Self Assembly
- Self-Consistent Field Theory of Multiply-Branched Block Copolymer Melts
- Structural complexity in monodisperse systems of isotropic particles
- Entropic Stabilization of Tunable Planar Modulated Superstructures
- A Tale of Two Tilings
Cited by in corpus (23)
- Derivation of coarse-grained potentials via multistate iterative Boltzmann inversion
- Stable Frank-Kasper phases of self-assembled, soft matter spheres
- Controlled self-assembly of periodic and aperiodic cluster crystals
- Formation of dodecagonal quasicrystals in two-dimensional systems of patchy particles
- Self-assembling two-dimensional quasicrystals in simple systems of monodisperse soft-core disks
- Computing phase diagrams for a quasicrystal-forming patchy-particle system
- Soft-core particles freezing to form a quasicrystal and a crystal-liquid phase
- Complex Crystals from Size-disperse Spheres
- Geometry-guided colloidal interactions and self-tiling of elastic dipoles formed by truncated pyramid particles in liquid crystals
- Non-Close-Packed Three-Dimensional Quasicrystals
- Self-assembly of two-dimensional binary quasicrystals: A possible route to a DNA quasicrystal
- Which wavenumbers determine the thermodynamic stability of soft matter quasicrystals?
- Wave-driven assembly of quasi periodic patterns of particles
- Local structural features elucidate crystallization of complex structures
- Aperiodic approximants bridging quasicrystals and modulated structures
- Bayesian Modelling of Pattern Formation from One Snapshot of Pattern
- Defects Enhance Stability in 12-fold Symmetric Soft-Matter Quasicrystals
- Surfactancy in a tadpole model of proteins
- Constraints on pure point diffraction on aperiodic point patterns of finite local complexity
- New kind of dodecagonal quasicrystal
- Unifying atoms and colloids near the glass transition through bond-order topology
- Non-additive simple potentials for pre-programmed self-assembly
- An aperiodic monotile that forces nonperiodicity through dendrites