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20162020
most citedRecent advances in accelerated discovery through machine learning and statistical inference

1 citations · 1 across the 1 of their papers we have counts for

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cond-mat.soft2020

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…

cond-mat.soft2020

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…

cond-mat.soft2019

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…

cond-mat.soft2019

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…

cond-mat.soft2018

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…

cond-mat.soft2018

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…