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Inverse methods for design of soft materials
Zachary M. Sherman, Michael P. Howard, Beth A. Lindquist +2
Functional soft materials, comprising colloidal and molecular building blocks that self-organize into complex structures as a result of their tunable interactions, enable a wide ar…
Connecting Inverse Design with Experimentally Relevant Models
Beth A Lindquist
While colloids are promising building blocks for the self-assembly of materials with novel microstructures, their numerous tunable parameters inhibit brute force searching for appr…
Structure and phase behavior of polymer-linked colloidal gels
Michael P. Howard, Ryan B. Jadrich, Beth A. Lindquist +4
Low-density "equilibrium" gels that consist of a percolated, kinetically arrested network of colloidal particles and are resilient to aging can be fabricated by restricting the num…
Assembly of particle strings via isotropic potentials
Debapriya Banerjee, Beth A. Lindquist, Ryan B. Jadrich +1
Assembly of spherical colloidal particles into extended structures, including linear strings, in the absence of directional interparticle bonding interactions or external perturbat…
From Close-Packed to Topologically Close-Packed: Formation of Laves Phases in Moderately Polydisperse Hard-Sphere Mixtures
Beth A. Lindquist, Ryan B. Jadrich, Thomas M. Truskett
Particle size polydispersity can help to inhibit crystallization of the hard-sphere fluid into close-packed structures at high packing fractions and thus is often employed to creat…
Inverse Design of Multicomponent Assemblies
William D. Piñeros, Beth A. Lindquist, Ryan B. Jadrich +1
Inverse design can be a useful strategy for discovering interactions that drive particles to spontaneously self-assemble into a desired structure. Here, we extend an inverse design…